---
_id: '30342'
article_number: '108'
author:
- first_name: Nina Amelie
  full_name: Lange, Nina Amelie
  id: '56843'
  last_name: Lange
- first_name: Jan Philipp
  full_name: Höpker, Jan Philipp
  id: '33913'
  last_name: Höpker
- first_name: Raimund
  full_name: Ricken, Raimund
  last_name: Ricken
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Tim
  full_name: Bartley, Tim
  id: '49683'
  last_name: Bartley
citation:
  ama: Lange NA, Höpker JP, Ricken R, et al. Cryogenic integrated spontaneous parametric
    down-conversion. <i>Optica</i>. 2022;9(1). doi:<a href="https://doi.org/10.1364/optica.445576">10.1364/optica.445576</a>
  apa: Lange, N. A., Höpker, J. P., Ricken, R., Quiring, V., Eigner, C., Silberhorn,
    C., &#38; Bartley, T. (2022). Cryogenic integrated spontaneous parametric down-conversion.
    <i>Optica</i>, <i>9</i>(1), Article 108. <a href="https://doi.org/10.1364/optica.445576">https://doi.org/10.1364/optica.445576</a>
  bibtex: '@article{Lange_Höpker_Ricken_Quiring_Eigner_Silberhorn_Bartley_2022, title={Cryogenic
    integrated spontaneous parametric down-conversion}, volume={9}, DOI={<a href="https://doi.org/10.1364/optica.445576">10.1364/optica.445576</a>},
    number={1108}, journal={Optica}, publisher={The Optical Society}, author={Lange,
    Nina Amelie and Höpker, Jan Philipp and Ricken, Raimund and Quiring, Viktor and
    Eigner, Christof and Silberhorn, Christine and Bartley, Tim}, year={2022} }'
  chicago: Lange, Nina Amelie, Jan Philipp Höpker, Raimund Ricken, Viktor Quiring,
    Christof Eigner, Christine Silberhorn, and Tim Bartley. “Cryogenic Integrated
    Spontaneous Parametric Down-Conversion.” <i>Optica</i> 9, no. 1 (2022). <a href="https://doi.org/10.1364/optica.445576">https://doi.org/10.1364/optica.445576</a>.
  ieee: 'N. A. Lange <i>et al.</i>, “Cryogenic integrated spontaneous parametric down-conversion,”
    <i>Optica</i>, vol. 9, no. 1, Art. no. 108, 2022, doi: <a href="https://doi.org/10.1364/optica.445576">10.1364/optica.445576</a>.'
  mla: Lange, Nina Amelie, et al. “Cryogenic Integrated Spontaneous Parametric Down-Conversion.”
    <i>Optica</i>, vol. 9, no. 1, 108, The Optical Society, 2022, doi:<a href="https://doi.org/10.1364/optica.445576">10.1364/optica.445576</a>.
  short: N.A. Lange, J.P. Höpker, R. Ricken, V. Quiring, C. Eigner, C. Silberhorn,
    T. Bartley, Optica 9 (2022).
date_created: 2022-03-16T08:53:22Z
date_updated: 2023-01-12T13:42:23Z
department:
- _id: '15'
- _id: '230'
- _id: '623'
doi: 10.1364/optica.445576
intvolume: '         9'
issue: '1'
keyword:
- Atomic and Molecular Physics
- and Optics
- Electronic
- Optical and Magnetic Materials
language:
- iso: eng
publication: Optica
publication_identifier:
  issn:
  - 2334-2536
publication_status: published
publisher: The Optical Society
status: public
title: Cryogenic integrated spontaneous parametric down-conversion
type: journal_article
user_id: '33913'
volume: 9
year: '2022'
...
---
_id: '33672'
abstract:
- lang: eng
  text: "<jats:title>Abstract</jats:title>\r\n               <jats:p>Lithium niobate
    is a promising platform for integrated quantum optics. In this platform, we aim
    to efficiently manipulate and detect quantum states by combining superconducting
    single photon detectors and modulators. The cryogenic operation of a superconducting
    single photon detector dictates the optimisation of the electro-optic modulators
    under the same operating conditions. To that end, we characterise a phase modulator,
    directional coupler, and polarisation converter at both ambient and cryogenic
    temperatures. The operation voltage <jats:inline-formula>\r\n                     <jats:tex-math><?CDATA
    $V_{\\pi/2}$?></jats:tex-math>\r\n                     <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"
    overflow=\"scroll\">\r\n                        <mml:msub>\r\n                           <mml:mi>V</mml:mi>\r\n
    \                          <mml:mrow>\r\n                              <mml:mi>π</mml:mi>\r\n
    \                             <mml:mrow>\r\n                                 <mml:mo>/</mml:mo>\r\n
    \                             </mml:mrow>\r\n                              <mml:mn>2</mml:mn>\r\n
    \                          </mml:mrow>\r\n                        </mml:msub>\r\n
    \                    </mml:math>\r\n                     <jats:inline-graphic
    xmlns:xlink=\"http://www.w3.org/1999/xlink\" xlink:href=\"jpphotonac6c63ieqn1.gif\"
    xlink:type=\"simple\" />\r\n                  </jats:inline-formula> of these
    modulators increases, due to the decrease in the electro-optic effect, by 74%
    for the phase modulator, 84% for the directional coupler and 35% for the polarisation
    converter below 8.5<jats:inline-formula>\r\n                     <jats:tex-math><?CDATA
    $\\,\\mathrm{K}$?></jats:tex-math>\r\n                     <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"
    overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mi
    mathvariant=\"normal\">K</mml:mi>\r\n                        </mml:mrow>\r\n                     </mml:math>\r\n
    \                    <jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\"
    xlink:href=\"jpphotonac6c63ieqn2.gif\" xlink:type=\"simple\" />\r\n                  </jats:inline-formula>.
    The phase modulator preserves its broadband nature and modulates light in the
    characterised wavelength range. The unbiased bar state of the directional coupler
    changed by a wavelength shift of 85<jats:inline-formula>\r\n                     <jats:tex-math><?CDATA
    $\\,\\mathrm{nm}$?></jats:tex-math>\r\n                     <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"
    overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mi
    mathvariant=\"normal\">n</mml:mi>\r\n                           <mml:mi mathvariant=\"normal\">m</mml:mi>\r\n
    \                       </mml:mrow>\r\n                     </mml:math>\r\n                     <jats:inline-graphic
    xmlns:xlink=\"http://www.w3.org/1999/xlink\" xlink:href=\"jpphotonac6c63ieqn3.gif\"
    xlink:type=\"simple\" />\r\n                  </jats:inline-formula> while cooling
    the device down to 5<jats:inline-formula>\r\n                     <jats:tex-math><?CDATA
    $\\,\\mathrm{K}$?></jats:tex-math>\r\n                     <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"
    overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mi
    mathvariant=\"normal\">K</mml:mi>\r\n                        </mml:mrow>\r\n                     </mml:math>\r\n
    \                    <jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\"
    xlink:href=\"jpphotonac6c63ieqn4.gif\" xlink:type=\"simple\" />\r\n                  </jats:inline-formula>.
    The polarisation converter uses periodic poling to phasematch the two orthogonal
    polarisations. The phasematched wavelength of the utilised poling changes by 112<jats:inline-formula>\r\n
    \                    <jats:tex-math><?CDATA $\\,\\mathrm{nm}$?></jats:tex-math>\r\n
    \                    <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"
    overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mi
    mathvariant=\"normal\">n</mml:mi>\r\n                           <mml:mi mathvariant=\"normal\">m</mml:mi>\r\n
    \                       </mml:mrow>\r\n                     </mml:math>\r\n                     <jats:inline-graphic
    xmlns:xlink=\"http://www.w3.org/1999/xlink\" xlink:href=\"jpphotonac6c63ieqn5.gif\"
    xlink:type=\"simple\" />\r\n                  </jats:inline-formula> when cooling
    to 5<jats:inline-formula>\r\n                     <jats:tex-math><?CDATA $\\,\\mathrm{K}$?></jats:tex-math>\r\n
    \                    <mml:math xmlns:mml=\"http://www.w3.org/1998/Math/MathML\"
    overflow=\"scroll\">\r\n                        <mml:mrow>\r\n                           <mml:mi
    mathvariant=\"normal\">K</mml:mi>\r\n                        </mml:mrow>\r\n                     </mml:math>\r\n
    \                    <jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\"
    xlink:href=\"jpphotonac6c63ieqn6.gif\" xlink:type=\"simple\" />\r\n                  </jats:inline-formula>.</jats:p>"
article_number: '034004'
author:
- first_name: Frederik
  full_name: Thiele, Frederik
  id: '50819'
  last_name: Thiele
  orcid: 0000-0003-0663-5587
- first_name: Felix
  full_name: vom Bruch, Felix
  id: '71245'
  last_name: vom Bruch
- first_name: Julian
  full_name: Brockmeier, Julian
  id: '44807'
  last_name: Brockmeier
- first_name: Maximilian
  full_name: Protte, Maximilian
  id: '46170'
  last_name: Protte
- first_name: Thomas
  full_name: Hummel, Thomas
  id: '83846'
  last_name: Hummel
- first_name: Raimund
  full_name: Ricken, Raimund
  last_name: Ricken
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Sebastian
  full_name: Lengeling, Sebastian
  id: '44373'
  last_name: Lengeling
- first_name: Harald
  full_name: Herrmann, Harald
  id: '216'
  last_name: Herrmann
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Tim
  full_name: Bartley, Tim
  id: '49683'
  last_name: Bartley
citation:
  ama: 'Thiele F, vom Bruch F, Brockmeier J, et al. Cryogenic electro-optic modulation
    in titanium in-diffused lithium niobate waveguides. <i>Journal of Physics: Photonics</i>.
    2022;4(3). doi:<a href="https://doi.org/10.1088/2515-7647/ac6c63">10.1088/2515-7647/ac6c63</a>'
  apa: 'Thiele, F., vom Bruch, F., Brockmeier, J., Protte, M., Hummel, T., Ricken,
    R., Quiring, V., Lengeling, S., Herrmann, H., Eigner, C., Silberhorn, C., &#38;
    Bartley, T. (2022). Cryogenic electro-optic modulation in titanium in-diffused
    lithium niobate waveguides. <i>Journal of Physics: Photonics</i>, <i>4</i>(3),
    Article 034004. <a href="https://doi.org/10.1088/2515-7647/ac6c63">https://doi.org/10.1088/2515-7647/ac6c63</a>'
  bibtex: '@article{Thiele_vom Bruch_Brockmeier_Protte_Hummel_Ricken_Quiring_Lengeling_Herrmann_Eigner_et
    al._2022, title={Cryogenic electro-optic modulation in titanium in-diffused lithium
    niobate waveguides}, volume={4}, DOI={<a href="https://doi.org/10.1088/2515-7647/ac6c63">10.1088/2515-7647/ac6c63</a>},
    number={3034004}, journal={Journal of Physics: Photonics}, publisher={IOP Publishing},
    author={Thiele, Frederik and vom Bruch, Felix and Brockmeier, Julian and Protte,
    Maximilian and Hummel, Thomas and Ricken, Raimund and Quiring, Viktor and Lengeling,
    Sebastian and Herrmann, Harald and Eigner, Christof and et al.}, year={2022} }'
  chicago: 'Thiele, Frederik, Felix vom Bruch, Julian Brockmeier, Maximilian Protte,
    Thomas Hummel, Raimund Ricken, Viktor Quiring, et al. “Cryogenic Electro-Optic
    Modulation in Titanium in-Diffused Lithium Niobate Waveguides.” <i>Journal of
    Physics: Photonics</i> 4, no. 3 (2022). <a href="https://doi.org/10.1088/2515-7647/ac6c63">https://doi.org/10.1088/2515-7647/ac6c63</a>.'
  ieee: 'F. Thiele <i>et al.</i>, “Cryogenic electro-optic modulation in titanium
    in-diffused lithium niobate waveguides,” <i>Journal of Physics: Photonics</i>,
    vol. 4, no. 3, Art. no. 034004, 2022, doi: <a href="https://doi.org/10.1088/2515-7647/ac6c63">10.1088/2515-7647/ac6c63</a>.'
  mla: 'Thiele, Frederik, et al. “Cryogenic Electro-Optic Modulation in Titanium in-Diffused
    Lithium Niobate Waveguides.” <i>Journal of Physics: Photonics</i>, vol. 4, no.
    3, 034004, IOP Publishing, 2022, doi:<a href="https://doi.org/10.1088/2515-7647/ac6c63">10.1088/2515-7647/ac6c63</a>.'
  short: 'F. Thiele, F. vom Bruch, J. Brockmeier, M. Protte, T. Hummel, R. Ricken,
    V. Quiring, S. Lengeling, H. Herrmann, C. Eigner, C. Silberhorn, T. Bartley, Journal
    of Physics: Photonics 4 (2022).'
date_created: 2022-10-11T07:14:40Z
date_updated: 2023-01-12T15:16:35Z
department:
- _id: '15'
- _id: '230'
- _id: '623'
doi: 10.1088/2515-7647/ac6c63
intvolume: '         4'
issue: '3'
keyword:
- Electrical and Electronic Engineering
- Atomic and Molecular Physics
- and Optics
- Electronic
- Optical and Magnetic Materials
language:
- iso: eng
publication: 'Journal of Physics: Photonics'
publication_identifier:
  issn:
  - 2515-7647
publication_status: published
publisher: IOP Publishing
status: public
title: Cryogenic electro-optic modulation in titanium in-diffused lithium niobate
  waveguides
type: journal_article
user_id: '83846'
volume: 4
year: '2022'
...
---
_id: '38532'
author:
- first_name: Alessandro
  full_name: Trenti, Alessandro
  last_name: Trenti
- first_name: Martin
  full_name: Achleitner, Martin
  last_name: Achleitner
- first_name: Florian
  full_name: Prawits, Florian
  last_name: Prawits
- first_name: Bernhard
  full_name: Schrenk, Bernhard
  last_name: Schrenk
- first_name: Hauke
  full_name: Conradi, Hauke
  last_name: Conradi
- first_name: Moritz
  full_name: Kleinert, Moritz
  last_name: Kleinert
- first_name: Alfonso
  full_name: Incoronato, Alfonso
  last_name: Incoronato
- first_name: Francesco
  full_name: Zanetto, Francesco
  last_name: Zanetto
- first_name: Franco
  full_name: Zappa, Franco
  last_name: Zappa
- first_name: Ilaria Di
  full_name: Luch, Ilaria Di
  last_name: Luch
- first_name: Ozan
  full_name: Cirkinoglu, Ozan
  last_name: Cirkinoglu
- first_name: Xaveer
  full_name: Leijtens, Xaveer
  last_name: Leijtens
- first_name: Antonio
  full_name: Bonardi, Antonio
  last_name: Bonardi
- first_name: Cedric
  full_name: Bruynsteen, Cedric
  last_name: Bruynsteen
- first_name: Xin
  full_name: Yin, Xin
  last_name: Yin
- first_name: Christian
  full_name: Kießler, Christian
  id: '44252'
  last_name: Kießler
- first_name: Harald
  full_name: Herrmann, Harald
  id: '216'
  last_name: Herrmann
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Mathieu
  full_name: Bozzio, Mathieu
  last_name: Bozzio
- first_name: Philip
  full_name: Walther, Philip
  last_name: Walther
- first_name: Hannah C.
  full_name: Thiel, Hannah C.
  last_name: Thiel
- first_name: Gregor
  full_name: Weihs, Gregor
  last_name: Weihs
- first_name: Hannes
  full_name: Hubel, Hannes
  last_name: Hubel
citation:
  ama: Trenti A, Achleitner M, Prawits F, et al. On-Chip Quantum Communication Devices.
    <i>Journal of Lightwave Technology</i>. 2022;40(23):7485-7497. doi:<a href="https://doi.org/10.1109/jlt.2022.3201389">10.1109/jlt.2022.3201389</a>
  apa: Trenti, A., Achleitner, M., Prawits, F., Schrenk, B., Conradi, H., Kleinert,
    M., Incoronato, A., Zanetto, F., Zappa, F., Luch, I. D., Cirkinoglu, O., Leijtens,
    X., Bonardi, A., Bruynsteen, C., Yin, X., Kießler, C., Herrmann, H., Silberhorn,
    C., Bozzio, M., … Hubel, H. (2022). On-Chip Quantum Communication Devices. <i>Journal
    of Lightwave Technology</i>, <i>40</i>(23), 7485–7497. <a href="https://doi.org/10.1109/jlt.2022.3201389">https://doi.org/10.1109/jlt.2022.3201389</a>
  bibtex: '@article{Trenti_Achleitner_Prawits_Schrenk_Conradi_Kleinert_Incoronato_Zanetto_Zappa_Luch_et
    al._2022, title={On-Chip Quantum Communication Devices}, volume={40}, DOI={<a
    href="https://doi.org/10.1109/jlt.2022.3201389">10.1109/jlt.2022.3201389</a>},
    number={23}, journal={Journal of Lightwave Technology}, publisher={Institute of
    Electrical and Electronics Engineers (IEEE)}, author={Trenti, Alessandro and Achleitner,
    Martin and Prawits, Florian and Schrenk, Bernhard and Conradi, Hauke and Kleinert,
    Moritz and Incoronato, Alfonso and Zanetto, Francesco and Zappa, Franco and Luch,
    Ilaria Di and et al.}, year={2022}, pages={7485–7497} }'
  chicago: 'Trenti, Alessandro, Martin Achleitner, Florian Prawits, Bernhard Schrenk,
    Hauke Conradi, Moritz Kleinert, Alfonso Incoronato, et al. “On-Chip Quantum Communication
    Devices.” <i>Journal of Lightwave Technology</i> 40, no. 23 (2022): 7485–97. <a
    href="https://doi.org/10.1109/jlt.2022.3201389">https://doi.org/10.1109/jlt.2022.3201389</a>.'
  ieee: 'A. Trenti <i>et al.</i>, “On-Chip Quantum Communication Devices,” <i>Journal
    of Lightwave Technology</i>, vol. 40, no. 23, pp. 7485–7497, 2022, doi: <a href="https://doi.org/10.1109/jlt.2022.3201389">10.1109/jlt.2022.3201389</a>.'
  mla: Trenti, Alessandro, et al. “On-Chip Quantum Communication Devices.” <i>Journal
    of Lightwave Technology</i>, vol. 40, no. 23, Institute of Electrical and Electronics
    Engineers (IEEE), 2022, pp. 7485–97, doi:<a href="https://doi.org/10.1109/jlt.2022.3201389">10.1109/jlt.2022.3201389</a>.
  short: A. Trenti, M. Achleitner, F. Prawits, B. Schrenk, H. Conradi, M. Kleinert,
    A. Incoronato, F. Zanetto, F. Zappa, I.D. Luch, O. Cirkinoglu, X. Leijtens, A.
    Bonardi, C. Bruynsteen, X. Yin, C. Kießler, H. Herrmann, C. Silberhorn, M. Bozzio,
    P. Walther, H.C. Thiel, G. Weihs, H. Hubel, Journal of Lightwave Technology 40
    (2022) 7485–7497.
date_created: 2023-01-24T07:41:40Z
date_updated: 2023-01-26T09:10:58Z
doi: 10.1109/jlt.2022.3201389
intvolume: '        40'
issue: '23'
keyword:
- General Engineering
language:
- iso: eng
page: 7485-7497
publication: Journal of Lightwave Technology
publication_identifier:
  issn:
  - 0733-8724
  - 1558-2213
publication_status: published
publisher: Institute of Electrical and Electronics Engineers (IEEE)
status: public
title: On-Chip Quantum Communication Devices
type: journal_article
user_id: '44252'
volume: 40
year: '2022'
...
---
_id: '39025'
article_number: '150501'
author:
- first_name: Evan
  full_name: Meyer-Scott, Evan
  last_name: Meyer-Scott
- first_name: Nidhin
  full_name: Prasannan, Nidhin
  id: '71403'
  last_name: Prasannan
- first_name: Ish
  full_name: Dhand, Ish
  last_name: Dhand
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Sonja
  full_name: Barkhofen, Sonja
  id: '48188'
  last_name: Barkhofen
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: Martin B.
  full_name: Plenio, Martin B.
  last_name: Plenio
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Meyer-Scott E, Prasannan N, Dhand I, et al. Scalable Generation of Multiphoton
    Entangled States by Active Feed-Forward and Multiplexing. <i>Physical Review Letters</i>.
    2022;129(15). doi:<a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>
  apa: Meyer-Scott, E., Prasannan, N., Dhand, I., Eigner, C., Quiring, V., Barkhofen,
    S., Brecht, B., Plenio, M. B., &#38; Silberhorn, C. (2022). Scalable Generation
    of Multiphoton Entangled States by Active Feed-Forward and Multiplexing. <i>Physical
    Review Letters</i>, <i>129</i>(15), Article 150501. <a href="https://doi.org/10.1103/physrevlett.129.150501">https://doi.org/10.1103/physrevlett.129.150501</a>
  bibtex: '@article{Meyer-Scott_Prasannan_Dhand_Eigner_Quiring_Barkhofen_Brecht_Plenio_Silberhorn_2022,
    title={Scalable Generation of Multiphoton Entangled States by Active Feed-Forward
    and Multiplexing}, volume={129}, DOI={<a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>},
    number={15150501}, journal={Physical Review Letters}, publisher={American Physical
    Society (APS)}, author={Meyer-Scott, Evan and Prasannan, Nidhin and Dhand, Ish
    and Eigner, Christof and Quiring, Viktor and Barkhofen, Sonja and Brecht, Benjamin
    and Plenio, Martin B. and Silberhorn, Christine}, year={2022} }'
  chicago: Meyer-Scott, Evan, Nidhin Prasannan, Ish Dhand, Christof Eigner, Viktor
    Quiring, Sonja Barkhofen, Benjamin Brecht, Martin B. Plenio, and Christine Silberhorn.
    “Scalable Generation of Multiphoton Entangled States by Active Feed-Forward and
    Multiplexing.” <i>Physical Review Letters</i> 129, no. 15 (2022). <a href="https://doi.org/10.1103/physrevlett.129.150501">https://doi.org/10.1103/physrevlett.129.150501</a>.
  ieee: 'E. Meyer-Scott <i>et al.</i>, “Scalable Generation of Multiphoton Entangled
    States by Active Feed-Forward and Multiplexing,” <i>Physical Review Letters</i>,
    vol. 129, no. 15, Art. no. 150501, 2022, doi: <a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>.'
  mla: Meyer-Scott, Evan, et al. “Scalable Generation of Multiphoton Entangled States
    by Active Feed-Forward and Multiplexing.” <i>Physical Review Letters</i>, vol.
    129, no. 15, 150501, American Physical Society (APS), 2022, doi:<a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>.
  short: E. Meyer-Scott, N. Prasannan, I. Dhand, C. Eigner, V. Quiring, S. Barkhofen,
    B. Brecht, M.B. Plenio, C. Silberhorn, Physical Review Letters 129 (2022).
date_created: 2023-01-24T08:05:44Z
date_updated: 2023-01-31T07:51:51Z
department:
- _id: '623'
doi: 10.1103/physrevlett.129.150501
intvolume: '       129'
issue: '15'
keyword:
- General Physics and Astronomy
language:
- iso: eng
publication: Physical Review Letters
publication_identifier:
  issn:
  - 0031-9007
  - 1079-7114
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Scalable Generation of Multiphoton Entangled States by Active Feed-Forward
  and Multiplexing
type: journal_article
user_id: '26263'
volume: 129
year: '2022'
...
---
_id: '40273'
article_number: '150501'
author:
- first_name: Evan
  full_name: Meyer-Scott, Evan
  last_name: Meyer-Scott
- first_name: Nidhin
  full_name: Prasannan, Nidhin
  id: '71403'
  last_name: Prasannan
- first_name: Ish
  full_name: Dhand, Ish
  last_name: Dhand
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Sonja
  full_name: Barkhofen, Sonja
  id: '48188'
  last_name: Barkhofen
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: Martin B.
  full_name: Plenio, Martin B.
  last_name: Plenio
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Meyer-Scott E, Prasannan N, Dhand I, et al. Scalable Generation of Multiphoton
    Entangled States by Active Feed-Forward and Multiplexing. <i>Physical Review Letters</i>.
    2022;129(15). doi:<a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>
  apa: Meyer-Scott, E., Prasannan, N., Dhand, I., Eigner, C., Quiring, V., Barkhofen,
    S., Brecht, B., Plenio, M. B., &#38; Silberhorn, C. (2022). Scalable Generation
    of Multiphoton Entangled States by Active Feed-Forward and Multiplexing. <i>Physical
    Review Letters</i>, <i>129</i>(15), Article 150501. <a href="https://doi.org/10.1103/physrevlett.129.150501">https://doi.org/10.1103/physrevlett.129.150501</a>
  bibtex: '@article{Meyer-Scott_Prasannan_Dhand_Eigner_Quiring_Barkhofen_Brecht_Plenio_Silberhorn_2022,
    title={Scalable Generation of Multiphoton Entangled States by Active Feed-Forward
    and Multiplexing}, volume={129}, DOI={<a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>},
    number={15150501}, journal={Physical Review Letters}, publisher={American Physical
    Society (APS)}, author={Meyer-Scott, Evan and Prasannan, Nidhin and Dhand, Ish
    and Eigner, Christof and Quiring, Viktor and Barkhofen, Sonja and Brecht, Benjamin
    and Plenio, Martin B. and Silberhorn, Christine}, year={2022} }'
  chicago: Meyer-Scott, Evan, Nidhin Prasannan, Ish Dhand, Christof Eigner, Viktor
    Quiring, Sonja Barkhofen, Benjamin Brecht, Martin B. Plenio, and Christine Silberhorn.
    “Scalable Generation of Multiphoton Entangled States by Active Feed-Forward and
    Multiplexing.” <i>Physical Review Letters</i> 129, no. 15 (2022). <a href="https://doi.org/10.1103/physrevlett.129.150501">https://doi.org/10.1103/physrevlett.129.150501</a>.
  ieee: 'E. Meyer-Scott <i>et al.</i>, “Scalable Generation of Multiphoton Entangled
    States by Active Feed-Forward and Multiplexing,” <i>Physical Review Letters</i>,
    vol. 129, no. 15, Art. no. 150501, 2022, doi: <a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>.'
  mla: Meyer-Scott, Evan, et al. “Scalable Generation of Multiphoton Entangled States
    by Active Feed-Forward and Multiplexing.” <i>Physical Review Letters</i>, vol.
    129, no. 15, 150501, American Physical Society (APS), 2022, doi:<a href="https://doi.org/10.1103/physrevlett.129.150501">10.1103/physrevlett.129.150501</a>.
  short: E. Meyer-Scott, N. Prasannan, I. Dhand, C. Eigner, V. Quiring, S. Barkhofen,
    B. Brecht, M.B. Plenio, C. Silberhorn, Physical Review Letters 129 (2022).
date_created: 2023-01-26T10:21:24Z
date_updated: 2023-02-02T08:53:55Z
department:
- _id: '288'
- _id: '15'
- _id: '623'
- _id: '230'
doi: 10.1103/physrevlett.129.150501
intvolume: '       129'
issue: '15'
keyword:
- General Physics and Astronomy
language:
- iso: eng
publication: Physical Review Letters
publication_identifier:
  issn:
  - 0031-9007
  - 1079-7114
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Scalable Generation of Multiphoton Entangled States by Active Feed-Forward
  and Multiplexing
type: journal_article
user_id: '48188'
volume: 129
year: '2022'
...
---
_id: '33450'
article_number: '042622'
author:
- first_name: Craig S.
  full_name: Hamilton, Craig S.
  last_name: Hamilton
- first_name: Regina
  full_name: Christ, Regina
  last_name: Christ
- first_name: Sonja
  full_name: Barkhofen, Sonja
  id: '48188'
  last_name: Barkhofen
- first_name: Stephen M.
  full_name: Barnett, Stephen M.
  last_name: Barnett
- first_name: Igor
  full_name: Jex, Igor
  last_name: Jex
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Hamilton CS, Christ R, Barkhofen S, Barnett SM, Jex I, Silberhorn C. Quantum-state
    creation in nonlinear-waveguide arrays. <i>Physical Review A</i>. 2022;105(4).
    doi:<a href="https://doi.org/10.1103/physreva.105.042622">10.1103/physreva.105.042622</a>
  apa: Hamilton, C. S., Christ, R., Barkhofen, S., Barnett, S. M., Jex, I., &#38;
    Silberhorn, C. (2022). Quantum-state creation in nonlinear-waveguide arrays. <i>Physical
    Review A</i>, <i>105</i>(4), Article 042622. <a href="https://doi.org/10.1103/physreva.105.042622">https://doi.org/10.1103/physreva.105.042622</a>
  bibtex: '@article{Hamilton_Christ_Barkhofen_Barnett_Jex_Silberhorn_2022, title={Quantum-state
    creation in nonlinear-waveguide arrays}, volume={105}, DOI={<a href="https://doi.org/10.1103/physreva.105.042622">10.1103/physreva.105.042622</a>},
    number={4042622}, journal={Physical Review A}, publisher={American Physical Society
    (APS)}, author={Hamilton, Craig S. and Christ, Regina and Barkhofen, Sonja and
    Barnett, Stephen M. and Jex, Igor and Silberhorn, Christine}, year={2022} }'
  chicago: Hamilton, Craig S., Regina Christ, Sonja Barkhofen, Stephen M. Barnett,
    Igor Jex, and Christine Silberhorn. “Quantum-State Creation in Nonlinear-Waveguide
    Arrays.” <i>Physical Review A</i> 105, no. 4 (2022). <a href="https://doi.org/10.1103/physreva.105.042622">https://doi.org/10.1103/physreva.105.042622</a>.
  ieee: 'C. S. Hamilton, R. Christ, S. Barkhofen, S. M. Barnett, I. Jex, and C. Silberhorn,
    “Quantum-state creation in nonlinear-waveguide arrays,” <i>Physical Review A</i>,
    vol. 105, no. 4, Art. no. 042622, 2022, doi: <a href="https://doi.org/10.1103/physreva.105.042622">10.1103/physreva.105.042622</a>.'
  mla: Hamilton, Craig S., et al. “Quantum-State Creation in Nonlinear-Waveguide Arrays.”
    <i>Physical Review A</i>, vol. 105, no. 4, 042622, American Physical Society (APS),
    2022, doi:<a href="https://doi.org/10.1103/physreva.105.042622">10.1103/physreva.105.042622</a>.
  short: C.S. Hamilton, R. Christ, S. Barkhofen, S.M. Barnett, I. Jex, C. Silberhorn,
    Physical Review A 105 (2022).
date_created: 2022-09-21T06:40:02Z
date_updated: 2023-02-02T08:34:15Z
department:
- _id: '623'
doi: 10.1103/physreva.105.042622
intvolume: '       105'
issue: '4'
language:
- iso: eng
publication: Physical Review A
publication_identifier:
  issn:
  - 2469-9926
  - 2469-9934
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Quantum-state creation in nonlinear-waveguide arrays
type: journal_article
user_id: '48188'
volume: 105
year: '2022'
...
---
_id: '41881'
author:
- first_name: E
  full_name: Pelucchi, E
  last_name: Pelucchi
- first_name: G
  full_name: Fagas, G
  last_name: Fagas
- first_name: I
  full_name: ' Aharonovich, I'
  last_name: ' Aharonovich'
- first_name: D
  full_name: Englund, D
  last_name: Englund
- first_name: E
  full_name: Figueroa, E
  last_name: Figueroa
- first_name: Q
  full_name: Gong, Q
  last_name: Gong
- first_name: H
  full_name: Hannes, H
  last_name: Hannes
- first_name: J
  full_name: Liu, J
  last_name: Liu
- first_name: C-Y
  full_name: Lu, C-Y
  last_name: Lu
- first_name: N
  full_name: Matsuda, N
  last_name: Matsuda
- first_name: J.W
  full_name: Pan, J.W
  last_name: Pan
- first_name: F
  full_name: Schreck, F
  last_name: Schreck
- first_name: F
  full_name: Sciarrino, F
  last_name: Sciarrino
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: J
  full_name: Wang, J
  last_name: Wang
- first_name: Klaus D.
  full_name: Jöns, Klaus D.
  id: '85353'
  last_name: Jöns
citation:
  ama: Pelucchi E, Fagas G,  Aharonovich I, et al. The potential and global outlook
    of integrated photonics for quantum technologi. 2022;4(3):194-208.
  apa: Pelucchi, E., Fagas, G.,  Aharonovich, I., Englund, D., Figueroa, E., Gong,
    Q., Hannes, H., Liu, J., Lu, C.-Y., Matsuda, N., Pan, J. W., Schreck, F., Sciarrino,
    F., Silberhorn, C., Wang, J., &#38; Jöns, K. D. (2022). <i>The potential and global
    outlook of integrated photonics for quantum technologi</i> (Vol. 4, Issue 3, pp.
    194–208).
  bibtex: '@article{Pelucchi_Fagas_ Aharonovich_Englund_Figueroa_Gong_Hannes_Liu_Lu_Matsuda_et
    al._2022, series={Nature Reviews Physics }, title={The potential and global outlook
    of integrated photonics for quantum technologi}, volume={4}, number={3}, author={Pelucchi,
    E and Fagas, G and  Aharonovich, I and Englund, D and Figueroa, E and Gong, Q
    and Hannes, H and Liu, J and Lu, C-Y and Matsuda, N and et al.}, year={2022},
    pages={194–208}, collection={Nature Reviews Physics } }'
  chicago: Pelucchi, E, G Fagas, I  Aharonovich, D Englund, E Figueroa, Q Gong, H
    Hannes, et al. “The potential and global outlook of integrated photonics for quantum
    technologi.” Nature Reviews Physics , 2022.
  ieee: E. Pelucchi <i>et al.</i>, “The potential and global outlook of integrated
    photonics for quantum technologi,” vol. 4, no. 3. pp. 194–208, 2022.
  mla: Pelucchi, E., et al. <i>The potential and global outlook of integrated photonics
    for quantum technologi</i>. no. 3, 2022, pp. 194–208.
  short: E. Pelucchi, G. Fagas, I.  Aharonovich, D. Englund, E. Figueroa, Q. Gong,
    H. Hannes, J. Liu, C.-Y. Lu, N. Matsuda, J.W. Pan, F. Schreck, F. Sciarrino, C.
    Silberhorn, J. Wang, K.D. Jöns, 4 (2022) 194–208.
date_created: 2023-02-07T19:45:56Z
date_updated: 2023-02-13T08:48:29Z
department:
- _id: '623'
intvolume: '         4'
issue: '3'
language:
- iso: ger
page: 194-208
publication_status: published
series_title: 'Nature Reviews Physics '
status: public
title: The potential and global outlook of integrated photonics for quantum technologi
type: conference
user_id: '71124'
volume: 4
year: '2022'
...
---
_id: '43744'
abstract:
- lang: eng
  text: We demonstrate theoretically and experimentally complex correlations in the
    photon numbers of two-mode quantum states using measurement-induced nonlinearity.
    For this, we combine the interference of coherent states and single photons with
    photon sub-traction.
author:
- first_name: Torsten
  full_name: Meier, Torsten
  id: '344'
  last_name: Meier
  orcid: 0000-0001-8864-2072
- first_name: Jan Philipp
  full_name: Hoepker, Jan Philipp
  last_name: Hoepker
- first_name: Maximilian
  full_name: Protte, Maximilian
  id: '46170'
  last_name: Protte
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Polina R.
  full_name: Sharapova, Polina R.
  id: '60286'
  last_name: Sharapova
- first_name: Jan
  full_name: Sperling, Jan
  id: '75127'
  last_name: Sperling
  orcid: 0000-0002-5844-3205
- first_name: Tim
  full_name: Bartley, Tim
  id: '49683'
  last_name: Bartley
citation:
  ama: 'Meier T, Hoepker JP, Protte M, et al. Two-Mode Photon-Number Correlations
    Created by Measurement-Induced Nonlinearity. In: <i>Conference on Lasers and Electro-Optics:
    Applications and Technology</i>. Optica Publishing Group; 2022:JTu3A. 17. doi:<a
    href="https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17">10.1364/CLEO_AT.2022.JTu3A.17</a>'
  apa: 'Meier, T., Hoepker, J. P., Protte, M., Eigner, C., Silberhorn, C., Sharapova,
    P. R., Sperling, J., &#38; Bartley, T. (2022). Two-Mode Photon-Number Correlations
    Created by Measurement-Induced Nonlinearity. <i>Conference on Lasers and Electro-Optics:
    Applications and Technology</i>, JTu3A. 17. <a href="https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17">https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17</a>'
  bibtex: '@inproceedings{Meier_Hoepker_Protte_Eigner_Silberhorn_Sharapova_Sperling_Bartley_2022,
    title={Two-Mode Photon-Number Correlations Created by Measurement-Induced Nonlinearity},
    DOI={<a href="https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17">10.1364/CLEO_AT.2022.JTu3A.17</a>},
    booktitle={Conference on Lasers and Electro-Optics: Applications and Technology},
    publisher={Optica Publishing Group}, author={Meier, Torsten and Hoepker, Jan Philipp
    and Protte, Maximilian and Eigner, Christof and Silberhorn, Christine and Sharapova,
    Polina R. and Sperling, Jan and Bartley, Tim}, year={2022}, pages={JTu3A. 17}
    }'
  chicago: 'Meier, Torsten, Jan Philipp Hoepker, Maximilian Protte, Christof Eigner,
    Christine Silberhorn, Polina R. Sharapova, Jan Sperling, and Tim Bartley. “Two-Mode
    Photon-Number Correlations Created by Measurement-Induced Nonlinearity.” In <i>Conference
    on Lasers and Electro-Optics: Applications and Technology</i>, JTu3A. 17. Optica
    Publishing Group, 2022. <a href="https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17">https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17</a>.'
  ieee: 'T. Meier <i>et al.</i>, “Two-Mode Photon-Number Correlations Created by Measurement-Induced
    Nonlinearity,” in <i>Conference on Lasers and Electro-Optics: Applications and
    Technology</i>, San Jose, California United States, 2022, p. JTu3A. 17, doi: <a
    href="https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17">10.1364/CLEO_AT.2022.JTu3A.17</a>.'
  mla: 'Meier, Torsten, et al. “Two-Mode Photon-Number Correlations Created by Measurement-Induced
    Nonlinearity.” <i>Conference on Lasers and Electro-Optics: Applications and Technology</i>,
    Optica Publishing Group, 2022, p. JTu3A. 17, doi:<a href="https://doi.org/10.1364/CLEO_AT.2022.JTu3A.17">10.1364/CLEO_AT.2022.JTu3A.17</a>.'
  short: 'T. Meier, J.P. Hoepker, M. Protte, C. Eigner, C. Silberhorn, P.R. Sharapova,
    J. Sperling, T. Bartley, in: Conference on Lasers and Electro-Optics: Applications
    and Technology, Optica Publishing Group, 2022, p. JTu3A. 17.'
conference:
  end_date: 2022-05-20
  location: San Jose, California United States
  name: 'CLEO: Applications and Technology 2022'
  start_date: 2022-05-15
date_created: 2023-04-16T01:31:32Z
date_updated: 2023-04-21T11:10:06Z
department:
- _id: '293'
- _id: '35'
- _id: '15'
- _id: '170'
- _id: '230'
- _id: '35'
- _id: '482'
- _id: '706'
- _id: '288'
doi: 10.1364/CLEO_AT.2022.JTu3A.17
language:
- iso: eng
main_file_link:
- url: https://opg.optica.org/abstract.cfm?uri=CLEO_AT-2022-JTu3A.17
page: JTu3A. 17
publication: 'Conference on Lasers and Electro-Optics: Applications and Technology'
publication_identifier:
  isbn:
  - 978-1-957171-05-0
publication_status: published
publisher: Optica Publishing Group
status: public
title: Two-Mode Photon-Number Correlations Created by Measurement-Induced Nonlinearity
type: conference
user_id: '16199'
year: '2022'
...
---
_id: '33484'
abstract:
- lang: eng
  text: We study the DC conductivity in potassium titanyl phosphate (KTiOPO4, KTP)
    and its isomorphs KTiOAsO4 (KTA) and Rb1%K99%TiOPO4 (RKTP) and introduce a method
    by which to reduce the overall ionic conductivity in KTP by a potassium nitrate
    treatment. Furthermore, we create so-called gray tracking in KTP and investigate
    the ionic conductivity in theses areas. A local unintended reduction of the ionic
    conductivity is observed in the gray-tracked regions, which also induce additional
    optical absorption in the material. We show that a thermal treatment in an oxygen-rich
    atmosphere removes the gray tracking and brings the ionic conductivity as well
    as the optical transmission back to the original level. These studies can help
    to choose the best material and treatment for specific applications.
author:
- first_name: Laura
  full_name: Padberg, Laura
  id: '40300'
  last_name: Padberg
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Adriana
  full_name: Bocchini, Adriana
  id: '58349'
  last_name: Bocchini
  orcid: 0000-0002-2134-3075
- first_name: Matteo
  full_name: Santandrea, Matteo
  id: '55095'
  last_name: Santandrea
  orcid: 0000-0001-5718-358X
- first_name: Uwe
  full_name: Gerstmann, Uwe
  id: '171'
  last_name: Gerstmann
  orcid: 0000-0002-4476-223X
- first_name: Wolf Gero
  full_name: Schmidt, Wolf Gero
  id: '468'
  last_name: Schmidt
  orcid: 0000-0002-2717-5076
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
citation:
  ama: 'Padberg L, Quiring V, Bocchini A, et al. DC Ionic Conductivity in KTP and
    Its Isomorphs: Properties, Methods for Suppression, and Its Connection to Gray
    Tracking. <i>Crystals</i>. 2022;12:1359. doi:<a href="https://doi.org/10.3390/cryst12101359">10.3390/cryst12101359</a>'
  apa: 'Padberg, L., Quiring, V., Bocchini, A., Santandrea, M., Gerstmann, U., Schmidt,
    W. G., Silberhorn, C., &#38; Eigner, C. (2022). DC Ionic Conductivity in KTP and
    Its Isomorphs: Properties, Methods for Suppression, and Its Connection to Gray
    Tracking. <i>Crystals</i>, <i>12</i>, 1359. <a href="https://doi.org/10.3390/cryst12101359">https://doi.org/10.3390/cryst12101359</a>'
  bibtex: '@article{Padberg_Quiring_Bocchini_Santandrea_Gerstmann_Schmidt_Silberhorn_Eigner_2022,
    title={DC Ionic Conductivity in KTP and Its Isomorphs: Properties, Methods for
    Suppression, and Its Connection to Gray Tracking}, volume={12}, DOI={<a href="https://doi.org/10.3390/cryst12101359">10.3390/cryst12101359</a>},
    journal={Crystals}, author={Padberg, Laura and Quiring, Viktor and Bocchini, Adriana
    and Santandrea, Matteo and Gerstmann, Uwe and Schmidt, Wolf Gero and Silberhorn,
    Christine and Eigner, Christof}, year={2022}, pages={1359} }'
  chicago: 'Padberg, Laura, Viktor Quiring, Adriana Bocchini, Matteo Santandrea, Uwe
    Gerstmann, Wolf Gero Schmidt, Christine Silberhorn, and Christof Eigner. “DC Ionic
    Conductivity in KTP and Its Isomorphs: Properties, Methods for Suppression, and
    Its Connection to Gray Tracking.” <i>Crystals</i> 12 (2022): 1359. <a href="https://doi.org/10.3390/cryst12101359">https://doi.org/10.3390/cryst12101359</a>.'
  ieee: 'L. Padberg <i>et al.</i>, “DC Ionic Conductivity in KTP and Its Isomorphs:
    Properties, Methods for Suppression, and Its Connection to Gray Tracking,” <i>Crystals</i>,
    vol. 12, p. 1359, 2022, doi: <a href="https://doi.org/10.3390/cryst12101359">10.3390/cryst12101359</a>.'
  mla: 'Padberg, Laura, et al. “DC Ionic Conductivity in KTP and Its Isomorphs: Properties,
    Methods for Suppression, and Its Connection to Gray Tracking.” <i>Crystals</i>,
    vol. 12, 2022, p. 1359, doi:<a href="https://doi.org/10.3390/cryst12101359">10.3390/cryst12101359</a>.'
  short: L. Padberg, V. Quiring, A. Bocchini, M. Santandrea, U. Gerstmann, W.G. Schmidt,
    C. Silberhorn, C. Eigner, Crystals 12 (2022) 1359.
date_created: 2022-09-26T13:12:48Z
date_updated: 2023-04-21T11:07:11Z
department:
- _id: '15'
- _id: '288'
- _id: '623'
- _id: '170'
- _id: '295'
- _id: '230'
- _id: '429'
- _id: '35'
- _id: '790'
doi: 10.3390/cryst12101359
intvolume: '        12'
language:
- iso: eng
main_file_link:
- open_access: '1'
oa: '1'
page: '1359'
project:
- _id: '53'
  name: 'TRR 142: TRR 142'
- _id: '55'
  name: 'TRR 142 - B: TRR 142 - Project Area B'
- _id: '52'
  name: 'PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing'
- _id: '168'
  name: 'TRR 142 - B07: TRR 142 - Subproject B07'
- _id: '54'
  name: 'TRR 142 - A: TRR 142 - Project Area A'
- _id: '166'
  name: 'TRR 142 - A11: TRR 142 - Subproject A11'
publication: Crystals
publication_identifier:
  issn:
  - 2073-4352
status: public
title: 'DC Ionic Conductivity in KTP and Its Isomorphs: Properties, Methods for Suppression,
  and Its Connection to Gray Tracking'
type: journal_article
user_id: '171'
volume: 12
year: '2022'
...
---
_id: '34884'
article_number: '263601'
author:
- first_name: Nidhin
  full_name: Prasannan, Nidhin
  id: '71403'
  last_name: Prasannan
- first_name: Jan
  full_name: Sperling, Jan
  id: '75127'
  last_name: Sperling
  orcid: 0000-0002-5844-3205
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Prasannan N, Sperling J, Brecht B, Silberhorn C. Direct Measurement of Higher-Order
    Nonlinear Polarization Squeezing. <i>Physical Review Letters</i>. 2022;129(26).
    doi:<a href="https://doi.org/10.1103/physrevlett.129.263601">10.1103/physrevlett.129.263601</a>
  apa: Prasannan, N., Sperling, J., Brecht, B., &#38; Silberhorn, C. (2022). Direct
    Measurement of Higher-Order Nonlinear Polarization Squeezing. <i>Physical Review
    Letters</i>, <i>129</i>(26), Article 263601. <a href="https://doi.org/10.1103/physrevlett.129.263601">https://doi.org/10.1103/physrevlett.129.263601</a>
  bibtex: '@article{Prasannan_Sperling_Brecht_Silberhorn_2022, title={Direct Measurement
    of Higher-Order Nonlinear Polarization Squeezing}, volume={129}, DOI={<a href="https://doi.org/10.1103/physrevlett.129.263601">10.1103/physrevlett.129.263601</a>},
    number={26263601}, journal={Physical Review Letters}, publisher={American Physical
    Society (APS)}, author={Prasannan, Nidhin and Sperling, Jan and Brecht, Benjamin
    and Silberhorn, Christine}, year={2022} }'
  chicago: Prasannan, Nidhin, Jan Sperling, Benjamin Brecht, and Christine Silberhorn.
    “Direct Measurement of Higher-Order Nonlinear Polarization Squeezing.” <i>Physical
    Review Letters</i> 129, no. 26 (2022). <a href="https://doi.org/10.1103/physrevlett.129.263601">https://doi.org/10.1103/physrevlett.129.263601</a>.
  ieee: 'N. Prasannan, J. Sperling, B. Brecht, and C. Silberhorn, “Direct Measurement
    of Higher-Order Nonlinear Polarization Squeezing,” <i>Physical Review Letters</i>,
    vol. 129, no. 26, Art. no. 263601, 2022, doi: <a href="https://doi.org/10.1103/physrevlett.129.263601">10.1103/physrevlett.129.263601</a>.'
  mla: Prasannan, Nidhin, et al. “Direct Measurement of Higher-Order Nonlinear Polarization
    Squeezing.” <i>Physical Review Letters</i>, vol. 129, no. 26, 263601, American
    Physical Society (APS), 2022, doi:<a href="https://doi.org/10.1103/physrevlett.129.263601">10.1103/physrevlett.129.263601</a>.
  short: N. Prasannan, J. Sperling, B. Brecht, C. Silberhorn, Physical Review Letters
    129 (2022).
date_created: 2022-12-23T07:57:24Z
date_updated: 2023-04-20T15:15:18Z
department:
- _id: '623'
- _id: '15'
- _id: '170'
- _id: '706'
- _id: '288'
- _id: '230'
- _id: '35'
doi: 10.1103/physrevlett.129.263601
intvolume: '       129'
issue: '26'
keyword:
- General Physics and Astronomy
language:
- iso: eng
publication: Physical Review Letters
publication_identifier:
  issn:
  - 0031-9007
  - 1079-7114
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Direct Measurement of Higher-Order Nonlinear Polarization Squeezing
type: journal_article
user_id: '16199'
volume: 129
year: '2022'
...
---
_id: '30921'
abstract:
- lang: eng
  text: Quantum walks function as essential means to implement quantum simulators,
    allowing one to study complex and often directly inaccessible quantum processes
    in controllable systems. In this contribution, the notion of a driven Gaussian
    quantum walk is introduced. In contrast to typically considered quantum walks
    in optical settings, we describe the operation of the walk in terms of a nonlinear
    map rather than a unitary operation, e.g., by replacing a beam-splitter-type coin
    with a two-mode squeezer, being a process that is controlled and driven by a pump
    field. This opens previously unattainable possibilities for quantum walks that
    include nonlinear elements as core components of their operation, vastly extending
    their range of applications. A full framework for driven Gaussian quantum walks
    is developed, including methods to dynamically characterize nonlinear, quantum,
    and quantum-nonlinear effects. Moreover, driven Gaussian quantum walks are compared
    with their classically interfering and linear counterparts, which are based on
    classical coherence of light rather than quantum superpositions. In particular,
    the generation and boost of highly multimode entanglement, squeezing, and other
    quantum effects are studied over the duration of the nonlinear walk. Importantly,
    we prove the quantumness of the evolution itself, regardless of the input state.
    A scheme for an experimental realization is proposed. Furthermore, nonlinear properties
    of driven Gaussian quantum walks are explored, such as amplification that leads
    to an ever increasing number of correlated quantum particles, constituting a source
    of new walkers during the walk. Therefore, a concept for quantum walks is proposed
    that leads to—and even produces—directly accessible quantum phenomena, and that
    renders the quantum simulation of nonlinear processes possible.
article_number: '042210'
article_type: original
author:
- first_name: Philip
  full_name: Held, Philip
  id: '68236'
  last_name: Held
- first_name: Melanie
  full_name: Engelkemeier, Melanie
  last_name: Engelkemeier
- first_name: Syamsundar
  full_name: De, Syamsundar
  last_name: De
- first_name: Sonja
  full_name: Barkhofen, Sonja
  id: '48188'
  last_name: Barkhofen
- first_name: Jan
  full_name: Sperling, Jan
  id: '75127'
  last_name: Sperling
  orcid: 0000-0002-5844-3205
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Held P, Engelkemeier M, De S, Barkhofen S, Sperling J, Silberhorn C. Driven
    Gaussian quantum walks. <i>Physical Review A</i>. 2022;105(4). doi:<a href="https://doi.org/10.1103/physreva.105.042210">10.1103/physreva.105.042210</a>
  apa: Held, P., Engelkemeier, M., De, S., Barkhofen, S., Sperling, J., &#38; Silberhorn,
    C. (2022). Driven Gaussian quantum walks. <i>Physical Review A</i>, <i>105</i>(4),
    Article 042210. <a href="https://doi.org/10.1103/physreva.105.042210">https://doi.org/10.1103/physreva.105.042210</a>
  bibtex: '@article{Held_Engelkemeier_De_Barkhofen_Sperling_Silberhorn_2022, title={Driven
    Gaussian quantum walks}, volume={105}, DOI={<a href="https://doi.org/10.1103/physreva.105.042210">10.1103/physreva.105.042210</a>},
    number={4042210}, journal={Physical Review A}, publisher={American Physical Society
    (APS)}, author={Held, Philip and Engelkemeier, Melanie and De, Syamsundar and
    Barkhofen, Sonja and Sperling, Jan and Silberhorn, Christine}, year={2022} }'
  chicago: Held, Philip, Melanie Engelkemeier, Syamsundar De, Sonja Barkhofen, Jan
    Sperling, and Christine Silberhorn. “Driven Gaussian Quantum Walks.” <i>Physical
    Review A</i> 105, no. 4 (2022). <a href="https://doi.org/10.1103/physreva.105.042210">https://doi.org/10.1103/physreva.105.042210</a>.
  ieee: 'P. Held, M. Engelkemeier, S. De, S. Barkhofen, J. Sperling, and C. Silberhorn,
    “Driven Gaussian quantum walks,” <i>Physical Review A</i>, vol. 105, no. 4, Art.
    no. 042210, 2022, doi: <a href="https://doi.org/10.1103/physreva.105.042210">10.1103/physreva.105.042210</a>.'
  mla: Held, Philip, et al. “Driven Gaussian Quantum Walks.” <i>Physical Review A</i>,
    vol. 105, no. 4, 042210, American Physical Society (APS), 2022, doi:<a href="https://doi.org/10.1103/physreva.105.042210">10.1103/physreva.105.042210</a>.
  short: P. Held, M. Engelkemeier, S. De, S. Barkhofen, J. Sperling, C. Silberhorn,
    Physical Review A 105 (2022).
date_created: 2022-04-20T06:38:07Z
date_updated: 2026-01-09T09:50:22Z
department:
- _id: '623'
- _id: '15'
- _id: '170'
- _id: '706'
- _id: '288'
- _id: '230'
- _id: '429'
- _id: '35'
doi: 10.1103/physreva.105.042210
intvolume: '       105'
issue: '4'
language:
- iso: eng
main_file_link:
- url: https://journals.aps.org/pra/abstract/10.1103/PhysRevA.105.042210
project:
- _id: '56'
  name: 'TRR 142 - C: TRR 142 - Project Area C'
- _id: '53'
  name: 'TRR 142: TRR 142'
publication: Physical Review A
publication_identifier:
  issn:
  - 2469-9926
  - 2469-9934
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Driven Gaussian quantum walks
type: journal_article
user_id: '68236'
volume: 105
year: '2022'
...
---
_id: '29524'
article_number: '033082'
author:
- first_name: Syamsundar
  full_name: De, Syamsundar
  last_name: De
- first_name: Jano
  full_name: Gil López, Jano
  id: '51223'
  last_name: Gil López
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Luis L.
  full_name: Sánchez-Soto, Luis L.
  last_name: Sánchez-Soto
- first_name: Zdeněk
  full_name: Hradil, Zdeněk
  last_name: Hradil
- first_name: Jaroslav
  full_name: Řeháček, Jaroslav
  last_name: Řeháček
citation:
  ama: De S, Gil López J, Brecht B, et al. Effects of coherence on temporal resolution.
    <i>Physical Review Research</i>. 2021;3(3). doi:<a href="https://doi.org/10.1103/physrevresearch.3.033082">10.1103/physrevresearch.3.033082</a>
  apa: De, S., Gil López, J., Brecht, B., Silberhorn, C., Sánchez-Soto, L. L., Hradil,
    Z., &#38; Řeháček, J. (2021). Effects of coherence on temporal resolution. <i>Physical
    Review Research</i>, <i>3</i>(3), Article 033082. <a href="https://doi.org/10.1103/physrevresearch.3.033082">https://doi.org/10.1103/physrevresearch.3.033082</a>
  bibtex: '@article{De_Gil López_Brecht_Silberhorn_Sánchez-Soto_Hradil_Řeháček_2021,
    title={Effects of coherence on temporal resolution}, volume={3}, DOI={<a href="https://doi.org/10.1103/physrevresearch.3.033082">10.1103/physrevresearch.3.033082</a>},
    number={3033082}, journal={Physical Review Research}, publisher={American Physical
    Society (APS)}, author={De, Syamsundar and Gil López, Jano and Brecht, Benjamin
    and Silberhorn, Christine and Sánchez-Soto, Luis L. and Hradil, Zdeněk and Řeháček,
    Jaroslav}, year={2021} }'
  chicago: De, Syamsundar, Jano Gil López, Benjamin Brecht, Christine Silberhorn,
    Luis L. Sánchez-Soto, Zdeněk Hradil, and Jaroslav Řeháček. “Effects of Coherence
    on Temporal Resolution.” <i>Physical Review Research</i> 3, no. 3 (2021). <a href="https://doi.org/10.1103/physrevresearch.3.033082">https://doi.org/10.1103/physrevresearch.3.033082</a>.
  ieee: 'S. De <i>et al.</i>, “Effects of coherence on temporal resolution,” <i>Physical
    Review Research</i>, vol. 3, no. 3, Art. no. 033082, 2021, doi: <a href="https://doi.org/10.1103/physrevresearch.3.033082">10.1103/physrevresearch.3.033082</a>.'
  mla: De, Syamsundar, et al. “Effects of Coherence on Temporal Resolution.” <i>Physical
    Review Research</i>, vol. 3, no. 3, 033082, American Physical Society (APS), 2021,
    doi:<a href="https://doi.org/10.1103/physrevresearch.3.033082">10.1103/physrevresearch.3.033082</a>.
  short: S. De, J. Gil López, B. Brecht, C. Silberhorn, L.L. Sánchez-Soto, Z. Hradil,
    J. Řeháček, Physical Review Research 3 (2021).
date_created: 2022-01-24T13:22:34Z
date_updated: 2022-05-30T15:27:55Z
department:
- _id: '15'
- _id: '623'
- _id: '288'
doi: 10.1103/physrevresearch.3.033082
intvolume: '         3'
issue: '3'
keyword:
- General Engineering
language:
- iso: eng
publication: Physical Review Research
publication_identifier:
  issn:
  - 2643-1564
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Effects of coherence on temporal resolution
type: journal_article
user_id: '27150'
volume: 3
year: '2021'
...
---
_id: '21020'
article_number: '010301'
article_type: original
author:
- first_name: Vahid
  full_name: Ansari, Vahid
  last_name: Ansari
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: Jano
  full_name: Gil-Lopez, Jano
  last_name: Gil-Lopez
- first_name: John M.
  full_name: Donohue, John M.
  last_name: Donohue
- first_name: Jaroslav
  full_name: Řeháček, Jaroslav
  last_name: Řeháček
- first_name: Zdeněk
  full_name: Hradil, Zdeněk
  last_name: Hradil
- first_name: Luis L.
  full_name: Sánchez-Soto, Luis L.
  last_name: Sánchez-Soto
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Ansari V, Brecht B, Gil-Lopez J, et al. Achieving the Ultimate Quantum Timing
    Resolution. <i>PRX Quantum</i>. 2021;2. doi:<a href="https://doi.org/10.1103/prxquantum.2.010301">10.1103/prxquantum.2.010301</a>
  apa: Ansari, V., Brecht, B., Gil-Lopez, J., Donohue, J. M., Řeháček, J., Hradil,
    Z., Sánchez-Soto, L. L., &#38; Silberhorn, C. (2021). Achieving the Ultimate Quantum
    Timing Resolution. <i>PRX Quantum</i>, <i>2</i>, Article 010301. <a href="https://doi.org/10.1103/prxquantum.2.010301">https://doi.org/10.1103/prxquantum.2.010301</a>
  bibtex: '@article{Ansari_Brecht_Gil-Lopez_Donohue_Řeháček_Hradil_Sánchez-Soto_Silberhorn_2021,
    title={Achieving the Ultimate Quantum Timing Resolution}, volume={2}, DOI={<a
    href="https://doi.org/10.1103/prxquantum.2.010301">10.1103/prxquantum.2.010301</a>},
    number={010301}, journal={PRX Quantum}, author={Ansari, Vahid and Brecht, Benjamin
    and Gil-Lopez, Jano and Donohue, John M. and Řeháček, Jaroslav and Hradil, Zdeněk
    and Sánchez-Soto, Luis L. and Silberhorn, Christine}, year={2021} }'
  chicago: Ansari, Vahid, Benjamin Brecht, Jano Gil-Lopez, John M. Donohue, Jaroslav
    Řeháček, Zdeněk Hradil, Luis L. Sánchez-Soto, and Christine Silberhorn. “Achieving
    the Ultimate Quantum Timing Resolution.” <i>PRX Quantum</i> 2 (2021). <a href="https://doi.org/10.1103/prxquantum.2.010301">https://doi.org/10.1103/prxquantum.2.010301</a>.
  ieee: 'V. Ansari <i>et al.</i>, “Achieving the Ultimate Quantum Timing Resolution,”
    <i>PRX Quantum</i>, vol. 2, Art. no. 010301, 2021, doi: <a href="https://doi.org/10.1103/prxquantum.2.010301">10.1103/prxquantum.2.010301</a>.'
  mla: Ansari, Vahid, et al. “Achieving the Ultimate Quantum Timing Resolution.” <i>PRX
    Quantum</i>, vol. 2, 010301, 2021, doi:<a href="https://doi.org/10.1103/prxquantum.2.010301">10.1103/prxquantum.2.010301</a>.
  short: V. Ansari, B. Brecht, J. Gil-Lopez, J.M. Donohue, J. Řeháček, Z. Hradil,
    L.L. Sánchez-Soto, C. Silberhorn, PRX Quantum 2 (2021).
date_created: 2021-01-20T08:11:11Z
date_updated: 2022-05-30T15:26:34Z
department:
- _id: '15'
- _id: '288'
doi: 10.1103/prxquantum.2.010301
intvolume: '         2'
language:
- iso: eng
project:
- _id: '71'
  name: TRR 142 - Subproject C1
publication: PRX Quantum
publication_identifier:
  issn:
  - 2691-3399
publication_status: published
quality_controlled: '1'
status: public
title: Achieving the Ultimate Quantum Timing Resolution
type: journal_article
user_id: '27150'
volume: 2
year: '2021'
...
---
_id: '22259'
article_number: '043012'
author:
- first_name: V
  full_name: Roman-Rodriguez, V
  last_name: Roman-Rodriguez
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: K
  full_name: Srinivasan, K
  last_name: Srinivasan
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: N
  full_name: Treps, N
  last_name: Treps
- first_name: E
  full_name: Diamanti, E
  last_name: Diamanti
- first_name: V
  full_name: Parigi, V
  last_name: Parigi
citation:
  ama: Roman-Rodriguez V, Brecht B, Srinivasan K, et al. Continuous variable multimode
    quantum states via symmetric group velocity matching. <i>New Journal of Physics</i>.
    2021;23. doi:<a href="https://doi.org/10.1088/1367-2630/abef96">10.1088/1367-2630/abef96</a>
  apa: Roman-Rodriguez, V., Brecht, B., Srinivasan, K., Silberhorn, C., Treps, N.,
    Diamanti, E., &#38; Parigi, V. (2021). Continuous variable multimode quantum states
    via symmetric group velocity matching. <i>New Journal of Physics</i>, <i>23</i>,
    Article 043012. <a href="https://doi.org/10.1088/1367-2630/abef96">https://doi.org/10.1088/1367-2630/abef96</a>
  bibtex: '@article{Roman-Rodriguez_Brecht_Srinivasan_Silberhorn_Treps_Diamanti_Parigi_2021,
    title={Continuous variable multimode quantum states via symmetric group velocity
    matching}, volume={23}, DOI={<a href="https://doi.org/10.1088/1367-2630/abef96">10.1088/1367-2630/abef96</a>},
    number={043012}, journal={New Journal of Physics}, author={Roman-Rodriguez, V
    and Brecht, Benjamin and Srinivasan, K and Silberhorn, Christine and Treps, N
    and Diamanti, E and Parigi, V}, year={2021} }'
  chicago: Roman-Rodriguez, V, Benjamin Brecht, K Srinivasan, Christine Silberhorn,
    N Treps, E Diamanti, and V Parigi. “Continuous Variable Multimode Quantum States
    via Symmetric Group Velocity Matching.” <i>New Journal of Physics</i> 23 (2021).
    <a href="https://doi.org/10.1088/1367-2630/abef96">https://doi.org/10.1088/1367-2630/abef96</a>.
  ieee: 'V. Roman-Rodriguez <i>et al.</i>, “Continuous variable multimode quantum
    states via symmetric group velocity matching,” <i>New Journal of Physics</i>,
    vol. 23, Art. no. 043012, 2021, doi: <a href="https://doi.org/10.1088/1367-2630/abef96">10.1088/1367-2630/abef96</a>.'
  mla: Roman-Rodriguez, V., et al. “Continuous Variable Multimode Quantum States via
    Symmetric Group Velocity Matching.” <i>New Journal of Physics</i>, vol. 23, 043012,
    2021, doi:<a href="https://doi.org/10.1088/1367-2630/abef96">10.1088/1367-2630/abef96</a>.
  short: V. Roman-Rodriguez, B. Brecht, K. Srinivasan, C. Silberhorn, N. Treps, E.
    Diamanti, V. Parigi, New Journal of Physics 23 (2021).
date_created: 2021-05-26T11:14:05Z
date_updated: 2022-05-30T15:26:21Z
department:
- _id: '15'
- _id: '288'
- _id: '623'
doi: 10.1088/1367-2630/abef96
intvolume: '        23'
language:
- iso: eng
publication: New Journal of Physics
publication_identifier:
  issn:
  - 1367-2630
publication_status: published
status: public
title: Continuous variable multimode quantum states via symmetric group velocity matching
type: journal_article
user_id: '27150'
volume: 23
year: '2021'
...
---
_id: '23728'
abstract:
- lang: eng
  text: We demonstrate the integration of amorphous tungsten silicide superconducting
    nanowire single-photon detectors on titanium in-diffused lithium niobate waveguides.
    We show proof-of-principle detection of evanescently coupled photons of 1550 nm
    wavelength using bidirectional waveguide coupling for two orthogonal polarization
    directions. We investigate the internal detection efficiency as well as detector
    absorption using coupling-independent characterization measurements. Furthermore,
    we describe strategies to improve the yield and efficiency of these devices.
article_type: original
author:
- first_name: Jan Philipp
  full_name: Höpker, Jan Philipp
  id: '33913'
  last_name: Höpker
- first_name: Varun B
  full_name: Verma, Varun B
  last_name: Verma
- first_name: Maximilian
  full_name: Protte, Maximilian
  id: '46170'
  last_name: Protte
- first_name: Raimund
  full_name: Ricken, Raimund
  last_name: Ricken
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Lena
  full_name: Ebers, Lena
  id: '40428'
  last_name: Ebers
- first_name: Manfred
  full_name: Hammer, Manfred
  id: '48077'
  last_name: Hammer
  orcid: 0000-0002-6331-9348
- first_name: Jens
  full_name: Förstner, Jens
  id: '158'
  last_name: Förstner
  orcid: 0000-0001-7059-9862
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Richard P
  full_name: Mirin, Richard P
  last_name: Mirin
- first_name: Sae
  full_name: Woo Nam, Sae
  last_name: Woo Nam
- first_name: Tim
  full_name: Bartley, Tim
  id: '49683'
  last_name: Bartley
citation:
  ama: 'Höpker JP, Verma VB, Protte M, et al. Integrated superconducting nanowire
    single-photon detectors on titanium in-diffused lithium niobate waveguides. <i>Journal
    of Physics: Photonics</i>. 2021;3:034022. doi:<a href="https://doi.org/10.1088/2515-7647/ac105b">10.1088/2515-7647/ac105b</a>'
  apa: 'Höpker, J. P., Verma, V. B., Protte, M., Ricken, R., Quiring, V., Eigner,
    C., Ebers, L., Hammer, M., Förstner, J., Silberhorn, C., Mirin, R. P., Woo Nam,
    S., &#38; Bartley, T. (2021). Integrated superconducting nanowire single-photon
    detectors on titanium in-diffused lithium niobate waveguides. <i>Journal of Physics:
    Photonics</i>, <i>3</i>, 034022. <a href="https://doi.org/10.1088/2515-7647/ac105b">https://doi.org/10.1088/2515-7647/ac105b</a>'
  bibtex: '@article{Höpker_Verma_Protte_Ricken_Quiring_Eigner_Ebers_Hammer_Förstner_Silberhorn_et
    al._2021, title={Integrated superconducting nanowire single-photon detectors on
    titanium in-diffused lithium niobate waveguides}, volume={3}, DOI={<a href="https://doi.org/10.1088/2515-7647/ac105b">10.1088/2515-7647/ac105b</a>},
    journal={Journal of Physics: Photonics}, author={Höpker, Jan Philipp and Verma,
    Varun B and Protte, Maximilian and Ricken, Raimund and Quiring, Viktor and Eigner,
    Christof and Ebers, Lena and Hammer, Manfred and Förstner, Jens and Silberhorn,
    Christine and et al.}, year={2021}, pages={034022} }'
  chicago: 'Höpker, Jan Philipp, Varun B Verma, Maximilian Protte, Raimund Ricken,
    Viktor Quiring, Christof Eigner, Lena Ebers, et al. “Integrated Superconducting
    Nanowire Single-Photon Detectors on Titanium in-Diffused Lithium Niobate Waveguides.”
    <i>Journal of Physics: Photonics</i> 3 (2021): 034022. <a href="https://doi.org/10.1088/2515-7647/ac105b">https://doi.org/10.1088/2515-7647/ac105b</a>.'
  ieee: 'J. P. Höpker <i>et al.</i>, “Integrated superconducting nanowire single-photon
    detectors on titanium in-diffused lithium niobate waveguides,” <i>Journal of Physics:
    Photonics</i>, vol. 3, p. 034022, 2021, doi: <a href="https://doi.org/10.1088/2515-7647/ac105b">10.1088/2515-7647/ac105b</a>.'
  mla: 'Höpker, Jan Philipp, et al. “Integrated Superconducting Nanowire Single-Photon
    Detectors on Titanium in-Diffused Lithium Niobate Waveguides.” <i>Journal of Physics:
    Photonics</i>, vol. 3, 2021, p. 034022, doi:<a href="https://doi.org/10.1088/2515-7647/ac105b">10.1088/2515-7647/ac105b</a>.'
  short: 'J.P. Höpker, V.B. Verma, M. Protte, R. Ricken, V. Quiring, C. Eigner, L.
    Ebers, M. Hammer, J. Förstner, C. Silberhorn, R.P. Mirin, S. Woo Nam, T. Bartley,
    Journal of Physics: Photonics 3 (2021) 034022.'
date_created: 2021-09-03T08:04:06Z
date_updated: 2022-10-25T07:34:42Z
ddc:
- '530'
department:
- _id: '15'
- _id: '61'
- _id: '230'
doi: 10.1088/2515-7647/ac105b
file:
- access_level: open_access
  content_type: application/pdf
  creator: fossie
  date_created: 2021-09-07T07:41:04Z
  date_updated: 2021-09-07T07:41:04Z
  file_id: '23825'
  file_name: 2021-07 Höpker J._Phys._Photonics_3_034022.pdf
  file_size: 1097820
  relation: main_file
file_date_updated: 2021-09-07T07:41:04Z
has_accepted_license: '1'
intvolume: '         3'
language:
- iso: eng
oa: '1'
page: '034022'
project:
- _id: '53'
  name: TRR 142
publication: 'Journal of Physics: Photonics'
publication_identifier:
  issn:
  - 2515-7647
publication_status: published
status: public
title: Integrated superconducting nanowire single-photon detectors on titanium in-diffused
  lithium niobate waveguides
type: journal_article
user_id: '49683'
volume: 3
year: '2021'
...
---
_id: '26221'
author:
- first_name: Moritz
  full_name: Bartnick, Moritz
  last_name: Bartnick
- first_name: Matteo
  full_name: Santandrea, Matteo
  id: '55095'
  last_name: Santandrea
  orcid: 0000-0001-5718-358X
- first_name: Jan Philipp
  full_name: Höpker, Jan Philipp
  id: '33913'
  last_name: Höpker
- first_name: Frederik
  full_name: Thiele, Frederik
  id: '50819'
  last_name: Thiele
  orcid: 0000-0003-0663-5587
- first_name: Raimund
  full_name: Ricken, Raimund
  last_name: Ricken
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Harald
  full_name: Herrmann, Harald
  id: '216'
  last_name: Herrmann
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Tim
  full_name: Bartley, Tim
  id: '49683'
  last_name: Bartley
citation:
  ama: Bartnick M, Santandrea M, Höpker JP, et al. Cryogenic Second-Harmonic Generation
    in Periodically Poled Lithium Niobate Waveguides. <i>Physical Review Applied</i>.
    Published online 2021. doi:<a href="https://doi.org/10.1103/physrevapplied.15.024028">10.1103/physrevapplied.15.024028</a>
  apa: Bartnick, M., Santandrea, M., Höpker, J. P., Thiele, F., Ricken, R., Quiring,
    V., Eigner, C., Herrmann, H., Silberhorn, C., &#38; Bartley, T. (2021). Cryogenic
    Second-Harmonic Generation in Periodically Poled Lithium Niobate Waveguides. <i>Physical
    Review Applied</i>. <a href="https://doi.org/10.1103/physrevapplied.15.024028">https://doi.org/10.1103/physrevapplied.15.024028</a>
  bibtex: '@article{Bartnick_Santandrea_Höpker_Thiele_Ricken_Quiring_Eigner_Herrmann_Silberhorn_Bartley_2021,
    title={Cryogenic Second-Harmonic Generation in Periodically Poled Lithium Niobate
    Waveguides}, DOI={<a href="https://doi.org/10.1103/physrevapplied.15.024028">10.1103/physrevapplied.15.024028</a>},
    journal={Physical Review Applied}, author={Bartnick, Moritz and Santandrea, Matteo
    and Höpker, Jan Philipp and Thiele, Frederik and Ricken, Raimund and Quiring,
    Viktor and Eigner, Christof and Herrmann, Harald and Silberhorn, Christine and
    Bartley, Tim}, year={2021} }'
  chicago: Bartnick, Moritz, Matteo Santandrea, Jan Philipp Höpker, Frederik Thiele,
    Raimund Ricken, Viktor Quiring, Christof Eigner, Harald Herrmann, Christine Silberhorn,
    and Tim Bartley. “Cryogenic Second-Harmonic Generation in Periodically Poled Lithium
    Niobate Waveguides.” <i>Physical Review Applied</i>, 2021. <a href="https://doi.org/10.1103/physrevapplied.15.024028">https://doi.org/10.1103/physrevapplied.15.024028</a>.
  ieee: 'M. Bartnick <i>et al.</i>, “Cryogenic Second-Harmonic Generation in Periodically
    Poled Lithium Niobate Waveguides,” <i>Physical Review Applied</i>, 2021, doi:
    <a href="https://doi.org/10.1103/physrevapplied.15.024028">10.1103/physrevapplied.15.024028</a>.'
  mla: Bartnick, Moritz, et al. “Cryogenic Second-Harmonic Generation in Periodically
    Poled Lithium Niobate Waveguides.” <i>Physical Review Applied</i>, 2021, doi:<a
    href="https://doi.org/10.1103/physrevapplied.15.024028">10.1103/physrevapplied.15.024028</a>.
  short: M. Bartnick, M. Santandrea, J.P. Höpker, F. Thiele, R. Ricken, V. Quiring,
    C. Eigner, H. Herrmann, C. Silberhorn, T. Bartley, Physical Review Applied (2021).
date_created: 2021-10-15T09:24:10Z
date_updated: 2023-01-12T13:39:50Z
department:
- _id: '230'
doi: 10.1103/physrevapplied.15.024028
language:
- iso: eng
publication: Physical Review Applied
publication_identifier:
  issn:
  - 2331-7019
publication_status: published
status: public
title: Cryogenic Second-Harmonic Generation in Periodically Poled Lithium Niobate
  Waveguides
type: journal_article
user_id: '33913'
year: '2021'
...
---
_id: '23826'
abstract:
- lang: eng
  text: <jats:p>Potassium titanyl phosphate (KTP) is a nonlinear optical material
    with applications in high-power frequency conversion or quasi-phase matching in
    submicron period domain grids. A prerequisite for these applications is a precise
    control and understanding of the poling mechanisms to enable the fabrication of
    high-grade domain grids. In contrast to the widely used material lithium niobate,
    the domain growth in KTP is less studied, because many standard methods, such
    as selective etching or polarization microscopy, provides less insight or are
    not applicable on non-polar surfaces, respectively. In this work, we present results
    of confocal Raman-spectroscopy of the ferroelectric domain structure in KTP. This
    analytical method allows for the visualization of domain grids of the non-polar
    KTP y-face and therefore more insight into the domain-growth and -structure in
    KTP, which can be used for improved domain fabrication.</jats:p>
article_number: '1086'
author:
- first_name: Julian
  full_name: Brockmeier, Julian
  id: '44807'
  last_name: Brockmeier
- first_name: Peter Walter Martin
  full_name: Mackwitz, Peter Walter Martin
  last_name: Mackwitz
- first_name: Michael
  full_name: Rüsing, Michael
  id: '22501'
  last_name: Rüsing
  orcid: 0000-0003-4682-4577
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Laura
  full_name: Padberg, Laura
  id: '40300'
  last_name: Padberg
- first_name: Matteo
  full_name: Santandrea, Matteo
  id: '55095'
  last_name: Santandrea
  orcid: 0000-0001-5718-358X
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Artur
  full_name: Zrenner, Artur
  id: '606'
  last_name: Zrenner
  orcid: 0000-0002-5190-0944
- first_name: Gerhard
  full_name: Berth, Gerhard
  id: '53'
  last_name: Berth
citation:
  ama: Brockmeier J, Mackwitz PWM, Rüsing M, et al. Non-Invasive Visualization of
    Ferroelectric Domain Structures on the Non-Polar y-Surface of KTiOPO4 via Raman
    Imaging. <i>Crystals</i>. Published online 2021. doi:<a href="https://doi.org/10.3390/cryst11091086">10.3390/cryst11091086</a>
  apa: Brockmeier, J., Mackwitz, P. W. M., Rüsing, M., Eigner, C., Padberg, L., Santandrea,
    M., Silberhorn, C., Zrenner, A., &#38; Berth, G. (2021). Non-Invasive Visualization
    of Ferroelectric Domain Structures on the Non-Polar y-Surface of KTiOPO4 via Raman
    Imaging. <i>Crystals</i>, Article 1086. <a href="https://doi.org/10.3390/cryst11091086">https://doi.org/10.3390/cryst11091086</a>
  bibtex: '@article{Brockmeier_Mackwitz_Rüsing_Eigner_Padberg_Santandrea_Silberhorn_Zrenner_Berth_2021,
    title={Non-Invasive Visualization of Ferroelectric Domain Structures on the Non-Polar
    y-Surface of KTiOPO4 via Raman Imaging}, DOI={<a href="https://doi.org/10.3390/cryst11091086">10.3390/cryst11091086</a>},
    number={1086}, journal={Crystals}, author={Brockmeier, Julian and Mackwitz, Peter
    Walter Martin and Rüsing, Michael and Eigner, Christof and Padberg, Laura and
    Santandrea, Matteo and Silberhorn, Christine and Zrenner, Artur and Berth, Gerhard},
    year={2021} }'
  chicago: Brockmeier, Julian, Peter Walter Martin Mackwitz, Michael Rüsing, Christof
    Eigner, Laura Padberg, Matteo Santandrea, Christine Silberhorn, Artur Zrenner,
    and Gerhard Berth. “Non-Invasive Visualization of Ferroelectric Domain Structures
    on the Non-Polar y-Surface of KTiOPO4 via Raman Imaging.” <i>Crystals</i>, 2021.
    <a href="https://doi.org/10.3390/cryst11091086">https://doi.org/10.3390/cryst11091086</a>.
  ieee: 'J. Brockmeier <i>et al.</i>, “Non-Invasive Visualization of Ferroelectric
    Domain Structures on the Non-Polar y-Surface of KTiOPO4 via Raman Imaging,” <i>Crystals</i>,
    Art. no. 1086, 2021, doi: <a href="https://doi.org/10.3390/cryst11091086">10.3390/cryst11091086</a>.'
  mla: Brockmeier, Julian, et al. “Non-Invasive Visualization of Ferroelectric Domain
    Structures on the Non-Polar y-Surface of KTiOPO4 via Raman Imaging.” <i>Crystals</i>,
    1086, 2021, doi:<a href="https://doi.org/10.3390/cryst11091086">10.3390/cryst11091086</a>.
  short: J. Brockmeier, P.W.M. Mackwitz, M. Rüsing, C. Eigner, L. Padberg, M. Santandrea,
    C. Silberhorn, A. Zrenner, G. Berth, Crystals (2021).
date_created: 2021-09-07T08:09:36Z
date_updated: 2023-10-06T07:40:37Z
department:
- _id: '15'
- _id: '288'
doi: 10.3390/cryst11091086
language:
- iso: eng
publication: Crystals
publication_identifier:
  issn:
  - 2073-4352
publication_status: published
status: public
title: Non-Invasive Visualization of Ferroelectric Domain Structures on the Non-Polar
  y-Surface of KTiOPO4 via Raman Imaging
type: journal_article
user_id: '13244'
year: '2021'
...
---
_id: '38135'
author:
- first_name: Laura
  full_name: Padberg, Laura
  id: '40300'
  last_name: Padberg
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: 'Matteo '
  full_name: 'Santandrea, Matteo '
  last_name: Santandrea
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Padberg L, Eigner C, Santandrea M, Silberhorn C. Production of waveguides made
    of materials from the KTP family. Published online 2021.
  apa: Padberg, L., Eigner, C., Santandrea, M., &#38; Silberhorn, C. (2021). <i>Production
    of waveguides made of materials from the KTP family</i>.
  bibtex: '@article{Padberg_Eigner_Santandrea_Silberhorn_2021, title={Production of
    waveguides made of materials from the KTP family}, author={Padberg, Laura and
    Eigner, Christof and Santandrea, Matteo  and Silberhorn, Christine}, year={2021}
    }'
  chicago: Padberg, Laura, Christof Eigner, Matteo  Santandrea, and Christine Silberhorn.
    “Production of Waveguides Made of Materials from the KTP Family,” 2021.
  ieee: L. Padberg, C. Eigner, M. Santandrea, and C. Silberhorn, “Production of waveguides
    made of materials from the KTP family.” 2021.
  mla: Padberg, Laura, et al. <i>Production of Waveguides Made of Materials from the
    KTP Family</i>. 2021.
  short: L. Padberg, C. Eigner, M. Santandrea, C. Silberhorn, (2021).
date_created: 2023-01-23T14:34:53Z
date_updated: 2023-01-23T14:35:06Z
department:
- _id: '288'
- _id: '623'
- _id: '15'
ipc: G02F 1/355
ipn: US 2021/0033944 A1
publication_date: 2021-02-04
status: public
title: Production of waveguides made of materials from the KTP family
type: patent
user_id: '40300'
year: '2021'
...
---
_id: '37936'
author:
- first_name: Emanuele
  full_name: Pelucchi, Emanuele
  last_name: Pelucchi
- first_name: Giorgos
  full_name: Fagas, Giorgos
  last_name: Fagas
- first_name: Igor
  full_name: Aharonovich, Igor
  last_name: Aharonovich
- first_name: Dirk
  full_name: Englund, Dirk
  last_name: Englund
- first_name: Eden
  full_name: Figueroa, Eden
  last_name: Figueroa
- first_name: Qihuang
  full_name: Gong, Qihuang
  last_name: Gong
- first_name: Hübel
  full_name: Hannes, Hübel
  last_name: Hannes
- first_name: Jin
  full_name: Liu, Jin
  last_name: Liu
- first_name: Chao-Yang
  full_name: Lu, Chao-Yang
  last_name: Lu
- first_name: Nobuyuki
  full_name: Matsuda, Nobuyuki
  last_name: Matsuda
- first_name: Jian-Wei
  full_name: Pan, Jian-Wei
  last_name: Pan
- first_name: Florian
  full_name: Schreck, Florian
  last_name: Schreck
- first_name: Fabio
  full_name: Sciarrino, Fabio
  last_name: Sciarrino
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
- first_name: Jianwei
  full_name: Wang, Jianwei
  last_name: Wang
- first_name: Klaus
  full_name: Jöns, Klaus
  id: '85353'
  last_name: Jöns
citation:
  ama: Pelucchi E, Fagas G, Aharonovich I, et al. The potential and global outlook
    of integrated photonics for quantum technologies. <i>Nature Reviews Physics</i>.
    2021;4(3):194-208. doi:<a href="https://doi.org/10.1038/s42254-021-00398-z">10.1038/s42254-021-00398-z</a>
  apa: Pelucchi, E., Fagas, G., Aharonovich, I., Englund, D., Figueroa, E., Gong,
    Q., Hannes, H., Liu, J., Lu, C.-Y., Matsuda, N., Pan, J.-W., Schreck, F., Sciarrino,
    F., Silberhorn, C., Wang, J., &#38; Jöns, K. (2021). The potential and global
    outlook of integrated photonics for quantum technologies. <i>Nature Reviews Physics</i>,
    <i>4</i>(3), 194–208. <a href="https://doi.org/10.1038/s42254-021-00398-z">https://doi.org/10.1038/s42254-021-00398-z</a>
  bibtex: '@article{Pelucchi_Fagas_Aharonovich_Englund_Figueroa_Gong_Hannes_Liu_Lu_Matsuda_et
    al._2021, title={The potential and global outlook of integrated photonics for
    quantum technologies}, volume={4}, DOI={<a href="https://doi.org/10.1038/s42254-021-00398-z">10.1038/s42254-021-00398-z</a>},
    number={3}, journal={Nature Reviews Physics}, publisher={Springer Science and
    Business Media LLC}, author={Pelucchi, Emanuele and Fagas, Giorgos and Aharonovich,
    Igor and Englund, Dirk and Figueroa, Eden and Gong, Qihuang and Hannes, Hübel
    and Liu, Jin and Lu, Chao-Yang and Matsuda, Nobuyuki and et al.}, year={2021},
    pages={194–208} }'
  chicago: 'Pelucchi, Emanuele, Giorgos Fagas, Igor Aharonovich, Dirk Englund, Eden
    Figueroa, Qihuang Gong, Hübel Hannes, et al. “The Potential and Global Outlook
    of Integrated Photonics for Quantum Technologies.” <i>Nature Reviews Physics</i>
    4, no. 3 (2021): 194–208. <a href="https://doi.org/10.1038/s42254-021-00398-z">https://doi.org/10.1038/s42254-021-00398-z</a>.'
  ieee: 'E. Pelucchi <i>et al.</i>, “The potential and global outlook of integrated
    photonics for quantum technologies,” <i>Nature Reviews Physics</i>, vol. 4, no.
    3, pp. 194–208, 2021, doi: <a href="https://doi.org/10.1038/s42254-021-00398-z">10.1038/s42254-021-00398-z</a>.'
  mla: Pelucchi, Emanuele, et al. “The Potential and Global Outlook of Integrated
    Photonics for Quantum Technologies.” <i>Nature Reviews Physics</i>, vol. 4, no.
    3, Springer Science and Business Media LLC, 2021, pp. 194–208, doi:<a href="https://doi.org/10.1038/s42254-021-00398-z">10.1038/s42254-021-00398-z</a>.
  short: E. Pelucchi, G. Fagas, I. Aharonovich, D. Englund, E. Figueroa, Q. Gong,
    H. Hannes, J. Liu, C.-Y. Lu, N. Matsuda, J.-W. Pan, F. Schreck, F. Sciarrino,
    C. Silberhorn, J. Wang, K. Jöns, Nature Reviews Physics 4 (2021) 194–208.
date_created: 2023-01-22T17:46:36Z
date_updated: 2023-01-30T11:13:42Z
department:
- _id: '288'
- _id: '15'
- _id: '623'
- _id: '230'
doi: 10.1038/s42254-021-00398-z
intvolume: '         4'
issue: '3'
keyword:
- General Physics and Astronomy
language:
- iso: eng
page: 194-208
publication: Nature Reviews Physics
publication_identifier:
  issn:
  - 2522-5820
publication_status: published
publisher: Springer Science and Business Media LLC
status: public
title: The potential and global outlook of integrated photonics for quantum technologies
type: journal_article
user_id: '26263'
volume: 4
year: '2021'
...
---
_id: '22770'
article_number: '063082'
author:
- first_name: Jano
  full_name: Gil López, Jano
  id: '51223'
  last_name: Gil López
- first_name: Matteo
  full_name: Santandrea, Matteo
  id: '55095'
  last_name: Santandrea
  orcid: 0000-0001-5718-358X
- first_name: Ganaël
  full_name: Roland, Ganaël
  last_name: Roland
- first_name: Benjamin
  full_name: Brecht, Benjamin
  id: '27150'
  last_name: Brecht
  orcid: '0000-0003-4140-0556 '
- first_name: Christof
  full_name: Eigner, Christof
  id: '13244'
  last_name: Eigner
  orcid: https://orcid.org/0000-0002-5693-3083
- first_name: Raimund
  full_name: Ricken, Raimund
  last_name: Ricken
- first_name: Viktor
  full_name: Quiring, Viktor
  last_name: Quiring
- first_name: Christine
  full_name: Silberhorn, Christine
  id: '26263'
  last_name: Silberhorn
citation:
  ama: Gil López J, Santandrea M, Roland G, et al. Improved non-linear devices for
    quantum applications. <i>New Journal of Physics</i>. Published online 2021. doi:<a
    href="https://doi.org/10.1088/1367-2630/ac09fd">10.1088/1367-2630/ac09fd</a>
  apa: Gil López, J., Santandrea, M., Roland, G., Brecht, B., Eigner, C., Ricken,
    R., Quiring, V., &#38; Silberhorn, C. (2021). Improved non-linear devices for
    quantum applications. <i>New Journal of Physics</i>, Article 063082. <a href="https://doi.org/10.1088/1367-2630/ac09fd">https://doi.org/10.1088/1367-2630/ac09fd</a>
  bibtex: '@article{Gil López_Santandrea_Roland_Brecht_Eigner_Ricken_Quiring_Silberhorn_2021,
    title={Improved non-linear devices for quantum applications}, DOI={<a href="https://doi.org/10.1088/1367-2630/ac09fd">10.1088/1367-2630/ac09fd</a>},
    number={063082}, journal={New Journal of Physics}, author={Gil López, Jano and
    Santandrea, Matteo and Roland, Ganaël and Brecht, Benjamin and Eigner, Christof
    and Ricken, Raimund and Quiring, Viktor and Silberhorn, Christine}, year={2021}
    }'
  chicago: Gil López, Jano, Matteo Santandrea, Ganaël Roland, Benjamin Brecht, Christof
    Eigner, Raimund Ricken, Viktor Quiring, and Christine Silberhorn. “Improved Non-Linear
    Devices for Quantum Applications.” <i>New Journal of Physics</i>, 2021. <a href="https://doi.org/10.1088/1367-2630/ac09fd">https://doi.org/10.1088/1367-2630/ac09fd</a>.
  ieee: 'J. Gil López <i>et al.</i>, “Improved non-linear devices for quantum applications,”
    <i>New Journal of Physics</i>, Art. no. 063082, 2021, doi: <a href="https://doi.org/10.1088/1367-2630/ac09fd">10.1088/1367-2630/ac09fd</a>.'
  mla: Gil López, Jano, et al. “Improved Non-Linear Devices for Quantum Applications.”
    <i>New Journal of Physics</i>, 063082, 2021, doi:<a href="https://doi.org/10.1088/1367-2630/ac09fd">10.1088/1367-2630/ac09fd</a>.
  short: J. Gil López, M. Santandrea, G. Roland, B. Brecht, C. Eigner, R. Ricken,
    V. Quiring, C. Silberhorn, New Journal of Physics (2021).
date_created: 2021-07-21T07:48:39Z
date_updated: 2023-02-03T12:27:32Z
department:
- _id: '15'
- _id: '288'
- _id: '623'
doi: 10.1088/1367-2630/ac09fd
language:
- iso: eng
project:
- _id: '71'
  name: 'TRR 142 - C1: TRR 142 - Subproject C1'
publication: New Journal of Physics
publication_identifier:
  issn:
  - 1367-2630
publication_status: published
status: public
title: Improved non-linear devices for quantum applications
type: journal_article
user_id: '27150'
year: '2021'
...
