---
_id: '17068'
author:
- first_name: Christian
  full_name: Braun, Christian
  last_name: Braun
- first_name: Sergej
  full_name: Neufeld, Sergej
  id: '23261'
  last_name: Neufeld
- first_name: Uwe
  full_name: Gerstmann, Uwe
  id: '171'
  last_name: Gerstmann
  orcid: 0000-0002-4476-223X
- first_name: S.
  full_name: Sanna, S.
  last_name: Sanna
- first_name: J.
  full_name: Plaickner, J.
  last_name: Plaickner
- first_name: E.
  full_name: Speiser, E.
  last_name: Speiser
- first_name: N.
  full_name: Esser, N.
  last_name: Esser
- first_name: Wolf Gero
  full_name: Schmidt, Wolf Gero
  id: '468'
  last_name: Schmidt
  orcid: 0000-0002-2717-5076
citation:
  ama: Braun C, Neufeld S, Gerstmann U, et al. Vibration-Driven Self-Doping of Dangling-Bond
    Wires on Si(553)-Au Surfaces. <i>Physical Review Letters</i>. 2020;124(14). doi:<a
    href="https://doi.org/10.1103/physrevlett.124.146802">10.1103/physrevlett.124.146802</a>
  apa: Braun, C., Neufeld, S., Gerstmann, U., Sanna, S., Plaickner, J., Speiser, E.,
    Esser, N., &#38; Schmidt, W. G. (2020). Vibration-Driven Self-Doping of Dangling-Bond
    Wires on Si(553)-Au Surfaces. <i>Physical Review Letters</i>, <i>124</i>(14).
    <a href="https://doi.org/10.1103/physrevlett.124.146802">https://doi.org/10.1103/physrevlett.124.146802</a>
  bibtex: '@article{Braun_Neufeld_Gerstmann_Sanna_Plaickner_Speiser_Esser_Schmidt_2020,
    title={Vibration-Driven Self-Doping of Dangling-Bond Wires on Si(553)-Au Surfaces},
    volume={124}, DOI={<a href="https://doi.org/10.1103/physrevlett.124.146802">10.1103/physrevlett.124.146802</a>},
    number={14}, journal={Physical Review Letters}, author={Braun, Christian and Neufeld,
    Sergej and Gerstmann, Uwe and Sanna, S. and Plaickner, J. and Speiser, E. and
    Esser, N. and Schmidt, Wolf Gero}, year={2020} }'
  chicago: Braun, Christian, Sergej Neufeld, Uwe Gerstmann, S. Sanna, J. Plaickner,
    E. Speiser, N. Esser, and Wolf Gero Schmidt. “Vibration-Driven Self-Doping of
    Dangling-Bond Wires on Si(553)-Au Surfaces.” <i>Physical Review Letters</i> 124,
    no. 14 (2020). <a href="https://doi.org/10.1103/physrevlett.124.146802">https://doi.org/10.1103/physrevlett.124.146802</a>.
  ieee: 'C. Braun <i>et al.</i>, “Vibration-Driven Self-Doping of Dangling-Bond Wires
    on Si(553)-Au Surfaces,” <i>Physical Review Letters</i>, vol. 124, no. 14, 2020,
    doi: <a href="https://doi.org/10.1103/physrevlett.124.146802">10.1103/physrevlett.124.146802</a>.'
  mla: Braun, Christian, et al. “Vibration-Driven Self-Doping of Dangling-Bond Wires
    on Si(553)-Au Surfaces.” <i>Physical Review Letters</i>, vol. 124, no. 14, 2020,
    doi:<a href="https://doi.org/10.1103/physrevlett.124.146802">10.1103/physrevlett.124.146802</a>.
  short: C. Braun, S. Neufeld, U. Gerstmann, S. Sanna, J. Plaickner, E. Speiser, N.
    Esser, W.G. Schmidt, Physical Review Letters 124 (2020).
date_created: 2020-05-29T09:54:43Z
date_updated: 2025-12-05T13:59:21Z
department:
- _id: '15'
- _id: '170'
- _id: '295'
- _id: '230'
- _id: '429'
- _id: '35'
- _id: '790'
doi: 10.1103/physrevlett.124.146802
intvolume: '       124'
issue: '14'
language:
- iso: eng
project:
- _id: '52'
  name: Computing Resources Provided by the Paderborn Center for Parallel Computing
- _id: '53'
  name: TRR 142
- _id: '55'
  name: TRR 142 - Project Area B
- _id: '69'
  name: TRR 142 - Subproject B4
- _id: '52'
  name: 'PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing'
- _id: '53'
  name: 'TRR 142: Maßgeschneiderte nichtlineare Photonik: Von grundlegenden Konzepten
    zu funktionellen Strukturen'
publication: Physical Review Letters
publication_identifier:
  issn:
  - 0031-9007
  - 1079-7114
publication_status: published
status: public
title: Vibration-Driven Self-Doping of Dangling-Bond Wires on Si(553)-Au Surfaces
type: journal_article
user_id: '16199'
volume: 124
year: '2020'
...
---
_id: '63046'
author:
- first_name: Nicholas Alexander
  full_name: Güsken, Nicholas Alexander
  id: '112030'
  last_name: Güsken
  orcid: 0000-0002-4816-0666
- first_name: Alberto
  full_name: Lauri, Alberto
  last_name: Lauri
- first_name: Yi
  full_name: Li, Yi
  last_name: Li
- first_name: Andrea
  full_name: Jacassi, Andrea
  last_name: Jacassi
- first_name: Takayuki
  full_name: Matsui, Takayuki
  last_name: Matsui
- first_name: Brock
  full_name: Doiron, Brock
  last_name: Doiron
- first_name: Ryan
  full_name: Bower, Ryan
  last_name: Bower
- first_name: Anna
  full_name: Regoutz, Anna
  last_name: Regoutz
- first_name: Andrei
  full_name: Mihai, Andrei
  last_name: Mihai
- first_name: Peter K.
  full_name: Petrov, Peter K.
  last_name: Petrov
- first_name: Rupert F.
  full_name: Oulton, Rupert F.
  last_name: Oulton
- first_name: Lesley F.
  full_name: Cohen, Lesley F.
  last_name: Cohen
- first_name: Stefan A.
  full_name: Maier, Stefan A.
  last_name: Maier
citation:
  ama: Güsken NA, Lauri A, Li Y, et al. IR hot carrier based photodetection in titanium
    nitride oxide thin film-Si junctions. <i>MRS Advances</i>. 2020;5(35-36):1843-1850.
    doi:<a href="https://doi.org/10.1557/adv.2020.129">10.1557/adv.2020.129</a>
  apa: Güsken, N. A., Lauri, A., Li, Y., Jacassi, A., Matsui, T., Doiron, B., Bower,
    R., Regoutz, A., Mihai, A., Petrov, P. K., Oulton, R. F., Cohen, L. F., &#38;
    Maier, S. A. (2020). IR hot carrier based photodetection in titanium nitride oxide
    thin film-Si junctions. <i>MRS Advances</i>, <i>5</i>(35–36), 1843–1850. <a href="https://doi.org/10.1557/adv.2020.129">https://doi.org/10.1557/adv.2020.129</a>
  bibtex: '@article{Güsken_Lauri_Li_Jacassi_Matsui_Doiron_Bower_Regoutz_Mihai_Petrov_et
    al._2020, title={IR hot carrier based photodetection in titanium nitride oxide
    thin film-Si junctions}, volume={5}, DOI={<a href="https://doi.org/10.1557/adv.2020.129">10.1557/adv.2020.129</a>},
    number={35–36}, journal={MRS Advances}, publisher={Springer Science and Business
    Media LLC}, author={Güsken, Nicholas Alexander and Lauri, Alberto and Li, Yi and
    Jacassi, Andrea and Matsui, Takayuki and Doiron, Brock and Bower, Ryan and Regoutz,
    Anna and Mihai, Andrei and Petrov, Peter K. and et al.}, year={2020}, pages={1843–1850}
    }'
  chicago: 'Güsken, Nicholas Alexander, Alberto Lauri, Yi Li, Andrea Jacassi, Takayuki
    Matsui, Brock Doiron, Ryan Bower, et al. “IR Hot Carrier Based Photodetection
    in Titanium Nitride Oxide Thin Film-Si Junctions.” <i>MRS Advances</i> 5, no.
    35–36 (2020): 1843–50. <a href="https://doi.org/10.1557/adv.2020.129">https://doi.org/10.1557/adv.2020.129</a>.'
  ieee: 'N. A. Güsken <i>et al.</i>, “IR hot carrier based photodetection in titanium
    nitride oxide thin film-Si junctions,” <i>MRS Advances</i>, vol. 5, no. 35–36,
    pp. 1843–1850, 2020, doi: <a href="https://doi.org/10.1557/adv.2020.129">10.1557/adv.2020.129</a>.'
  mla: Güsken, Nicholas Alexander, et al. “IR Hot Carrier Based Photodetection in
    Titanium Nitride Oxide Thin Film-Si Junctions.” <i>MRS Advances</i>, vol. 5, no.
    35–36, Springer Science and Business Media LLC, 2020, pp. 1843–50, doi:<a href="https://doi.org/10.1557/adv.2020.129">10.1557/adv.2020.129</a>.
  short: N.A. Güsken, A. Lauri, Y. Li, A. Jacassi, T. Matsui, B. Doiron, R. Bower,
    A. Regoutz, A. Mihai, P.K. Petrov, R.F. Oulton, L.F. Cohen, S.A. Maier, MRS Advances
    5 (2020) 1843–1850.
date_created: 2025-12-11T20:38:45Z
date_updated: 2025-12-15T11:21:37Z
department:
- _id: '623'
- _id: '15'
- _id: '230'
doi: 10.1557/adv.2020.129
intvolume: '         5'
issue: 35-36
language:
- iso: eng
page: 1843-1850
publication: MRS Advances
publication_identifier:
  issn:
  - 2059-8521
publication_status: published
publisher: Springer Science and Business Media LLC
status: public
title: IR hot carrier based photodetection in titanium nitride oxide thin film-Si
  junctions
type: journal_article
user_id: '112030'
volume: 5
year: '2020'
...
---
_id: '40364'
article_number: '013371'
author:
- first_name: Polina R.
  full_name: Sharapova, Polina R.
  id: '60286'
  last_name: Sharapova
- first_name: G.
  full_name: Frascella, G.
  last_name: Frascella
- first_name: M.
  full_name: Riabinin, M.
  last_name: Riabinin
- first_name: A. M.
  full_name: Pérez, A. M.
  last_name: Pérez
- first_name: O. V.
  full_name: Tikhonova, O. V.
  last_name: Tikhonova
- first_name: S.
  full_name: Lemieux, S.
  last_name: Lemieux
- first_name: R. W.
  full_name: Boyd, R. W.
  last_name: Boyd
- first_name: G.
  full_name: Leuchs, G.
  last_name: Leuchs
- first_name: M. V.
  full_name: Chekhova, M. V.
  last_name: Chekhova
citation:
  ama: Sharapova PR, Frascella G, Riabinin M, et al. Properties of bright squeezed
    vacuum at increasing brightness. <i>Physical Review Research</i>. 2020;2(1). doi:<a
    href="https://doi.org/10.1103/physrevresearch.2.013371">10.1103/physrevresearch.2.013371</a>
  apa: Sharapova, P. R., Frascella, G., Riabinin, M., Pérez, A. M., Tikhonova, O.
    V., Lemieux, S., Boyd, R. W., Leuchs, G., &#38; Chekhova, M. V. (2020). Properties
    of bright squeezed vacuum at increasing brightness. <i>Physical Review Research</i>,
    <i>2</i>(1), Article 013371. <a href="https://doi.org/10.1103/physrevresearch.2.013371">https://doi.org/10.1103/physrevresearch.2.013371</a>
  bibtex: '@article{Sharapova_Frascella_Riabinin_Pérez_Tikhonova_Lemieux_Boyd_Leuchs_Chekhova_2020,
    title={Properties of bright squeezed vacuum at increasing brightness}, volume={2},
    DOI={<a href="https://doi.org/10.1103/physrevresearch.2.013371">10.1103/physrevresearch.2.013371</a>},
    number={1013371}, journal={Physical Review Research}, publisher={American Physical
    Society (APS)}, author={Sharapova, Polina R. and Frascella, G. and Riabinin, M.
    and Pérez, A. M. and Tikhonova, O. V. and Lemieux, S. and Boyd, R. W. and Leuchs,
    G. and Chekhova, M. V.}, year={2020} }'
  chicago: Sharapova, Polina R., G. Frascella, M. Riabinin, A. M. Pérez, O. V. Tikhonova,
    S. Lemieux, R. W. Boyd, G. Leuchs, and M. V. Chekhova. “Properties of Bright Squeezed
    Vacuum at Increasing Brightness.” <i>Physical Review Research</i> 2, no. 1 (2020).
    <a href="https://doi.org/10.1103/physrevresearch.2.013371">https://doi.org/10.1103/physrevresearch.2.013371</a>.
  ieee: 'P. R. Sharapova <i>et al.</i>, “Properties of bright squeezed vacuum at increasing
    brightness,” <i>Physical Review Research</i>, vol. 2, no. 1, Art. no. 013371,
    2020, doi: <a href="https://doi.org/10.1103/physrevresearch.2.013371">10.1103/physrevresearch.2.013371</a>.'
  mla: Sharapova, Polina R., et al. “Properties of Bright Squeezed Vacuum at Increasing
    Brightness.” <i>Physical Review Research</i>, vol. 2, no. 1, 013371, American
    Physical Society (APS), 2020, doi:<a href="https://doi.org/10.1103/physrevresearch.2.013371">10.1103/physrevresearch.2.013371</a>.
  short: P.R. Sharapova, G. Frascella, M. Riabinin, A.M. Pérez, O.V. Tikhonova, S.
    Lemieux, R.W. Boyd, G. Leuchs, M.V. Chekhova, Physical Review Research 2 (2020).
date_created: 2023-01-26T13:45:35Z
date_updated: 2025-12-16T11:26:50Z
department:
- _id: '15'
- _id: '569'
- _id: '170'
- _id: '429'
- _id: '230'
- _id: '35'
doi: 10.1103/physrevresearch.2.013371
intvolume: '         2'
issue: '1'
keyword:
- General Engineering
language:
- iso: eng
project:
- _id: '53'
  name: 'TRR 142: TRR 142'
- _id: '56'
  name: 'TRR 142 - C: TRR 142 - Project Area C'
- _id: '72'
  name: 'TRR 142 - C2: TRR 142 - Subproject C2'
publication: Physical Review Research
publication_identifier:
  issn:
  - 2643-1564
publication_status: published
publisher: American Physical Society (APS)
status: public
title: Properties of bright squeezed vacuum at increasing brightness
type: journal_article
user_id: '16199'
volume: 2
year: '2020'
...
---
_id: '40381'
abstract:
- lang: eng
  text: "<jats:title>Abstract</jats:title>\r\n               <jats:p>The phenomenon
    of entanglement is the basis of quantum information and quantum communication
    processes. Entangled systems with a large number of photons are of great interest
    at present because they provide a platform for streaming technologies based on
    photonics. In this paper we present a device which operates with four-photons
    and based on the Hong–Ou–Mandel interference. The presented device allows to maximize
    the degree of spatial entanglement and generate the highly entangled four-dimensional
    Bell states. Furthermore, the use of the interferometer in different regimes leads
    to fast interference fringes in the coincidence probability with period of oscillations
    twice smaller than the pump wavelength. We have a good agreement between theoretical
    simulations and experimental results.</jats:p>"
article_number: '045020'
author:
- first_name: A
  full_name: Ferreri, A
  last_name: Ferreri
- first_name: V
  full_name: Ansari, V
  last_name: Ansari
- 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: Polina R.
  full_name: Sharapova, Polina R.
  id: '60286'
  last_name: Sharapova
citation:
  ama: Ferreri A, Ansari V, Brecht B, Silberhorn C, Sharapova PR. Spatial entanglement
    and state engineering via four-photon Hong–Ou–Mandel interference. <i>Quantum
    Science and Technology</i>. 2020;5(4). doi:<a href="https://doi.org/10.1088/2058-9565/abb411">10.1088/2058-9565/abb411</a>
  apa: Ferreri, A., Ansari, V., Brecht, B., Silberhorn, C., &#38; Sharapova, P. R.
    (2020). Spatial entanglement and state engineering via four-photon Hong–Ou–Mandel
    interference. <i>Quantum Science and Technology</i>, <i>5</i>(4), Article 045020.
    <a href="https://doi.org/10.1088/2058-9565/abb411">https://doi.org/10.1088/2058-9565/abb411</a>
  bibtex: '@article{Ferreri_Ansari_Brecht_Silberhorn_Sharapova_2020, title={Spatial
    entanglement and state engineering via four-photon Hong–Ou–Mandel interference},
    volume={5}, DOI={<a href="https://doi.org/10.1088/2058-9565/abb411">10.1088/2058-9565/abb411</a>},
    number={4045020}, journal={Quantum Science and Technology}, publisher={IOP Publishing},
    author={Ferreri, A and Ansari, V and Brecht, Benjamin and Silberhorn, Christine
    and Sharapova, Polina R.}, year={2020} }'
  chicago: Ferreri, A, V Ansari, Benjamin Brecht, Christine Silberhorn, and Polina
    R. Sharapova. “Spatial Entanglement and State Engineering via Four-Photon Hong–Ou–Mandel
    Interference.” <i>Quantum Science and Technology</i> 5, no. 4 (2020). <a href="https://doi.org/10.1088/2058-9565/abb411">https://doi.org/10.1088/2058-9565/abb411</a>.
  ieee: 'A. Ferreri, V. Ansari, B. Brecht, C. Silberhorn, and P. R. Sharapova, “Spatial
    entanglement and state engineering via four-photon Hong–Ou–Mandel interference,”
    <i>Quantum Science and Technology</i>, vol. 5, no. 4, Art. no. 045020, 2020, doi:
    <a href="https://doi.org/10.1088/2058-9565/abb411">10.1088/2058-9565/abb411</a>.'
  mla: Ferreri, A., et al. “Spatial Entanglement and State Engineering via Four-Photon
    Hong–Ou–Mandel Interference.” <i>Quantum Science and Technology</i>, vol. 5, no.
    4, 045020, IOP Publishing, 2020, doi:<a href="https://doi.org/10.1088/2058-9565/abb411">10.1088/2058-9565/abb411</a>.
  short: A. Ferreri, V. Ansari, B. Brecht, C. Silberhorn, P.R. Sharapova, Quantum
    Science and Technology 5 (2020).
date_created: 2023-01-26T14:06:23Z
date_updated: 2025-12-16T11:27:56Z
department:
- _id: '15'
- _id: '569'
- _id: '170'
- _id: '288'
- _id: '230'
- _id: '429'
- _id: '35'
doi: 10.1088/2058-9565/abb411
intvolume: '         5'
issue: '4'
keyword:
- Electrical and Electronic Engineering
- Physics and Astronomy (miscellaneous)
- Materials Science (miscellaneous)
- Atomic and Molecular Physics
- and Optics
language:
- iso: eng
project:
- _id: '53'
  name: 'TRR 142: TRR 142'
- _id: '56'
  name: 'TRR 142 - C: TRR 142 - Project Area C'
- _id: '72'
  name: 'TRR 142 - C2: TRR 142 - Subproject C2'
publication: Quantum Science and Technology
publication_identifier:
  issn:
  - 2058-9565
publication_status: published
publisher: IOP Publishing
status: public
title: Spatial entanglement and state engineering via four-photon Hong–Ou–Mandel interference
type: journal_article
user_id: '16199'
volume: 5
year: '2020'
...
---
_id: '37933'
abstract:
- lang: eng
  text: <jats:p>We present a time-over-threshold readout technique to count the number
    of activated pixels from an array of superconducting nanowire single photon detectors
    (SNSPDs). This technique places no additional heatload on the cryostat, and retains
    the intrinsic count rate of the time-tagger. We demonstrate proof-of-principle
    operation with respect to a four-pixel device. Furthermore, we show that, given
    some permissible error threshold, the number of pixels that can be reliably read
    out scales linearly with the intrinsic signal-to-noise ratio of the individual
    pixel response.</jats:p>
article_number: '5528'
author:
- first_name: Johannes
  full_name: Tiedau, Johannes
  last_name: Tiedau
- first_name: Timon
  full_name: Schapeler, Timon
  id: '55629'
  last_name: Schapeler
  orcid: 0000-0001-7652-1716
- first_name: Vikas
  full_name: Anant, Vikas
  last_name: Anant
- first_name: Helmut
  full_name: Fedder, Helmut
  last_name: Fedder
- 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: Tiedau J, Schapeler T, Anant V, Fedder H, Silberhorn C, Bartley T. Single-channel
    electronic readout of a multipixel superconducting nanowire single photon detector.
    <i>Optics Express</i>. 2020;28(4). doi:<a href="https://doi.org/10.1364/oe.383111">10.1364/oe.383111</a>
  apa: Tiedau, J., Schapeler, T., Anant, V., Fedder, H., Silberhorn, C., &#38; Bartley,
    T. (2020). Single-channel electronic readout of a multipixel superconducting nanowire
    single photon detector. <i>Optics Express</i>, <i>28</i>(4), Article 5528. <a
    href="https://doi.org/10.1364/oe.383111">https://doi.org/10.1364/oe.383111</a>
  bibtex: '@article{Tiedau_Schapeler_Anant_Fedder_Silberhorn_Bartley_2020, title={Single-channel
    electronic readout of a multipixel superconducting nanowire single photon detector},
    volume={28}, DOI={<a href="https://doi.org/10.1364/oe.383111">10.1364/oe.383111</a>},
    number={45528}, journal={Optics Express}, publisher={Optica Publishing Group},
    author={Tiedau, Johannes and Schapeler, Timon and Anant, Vikas and Fedder, Helmut
    and Silberhorn, Christine and Bartley, Tim}, year={2020} }'
  chicago: Tiedau, Johannes, Timon Schapeler, Vikas Anant, Helmut Fedder, Christine
    Silberhorn, and Tim Bartley. “Single-Channel Electronic Readout of a Multipixel
    Superconducting Nanowire Single Photon Detector.” <i>Optics Express</i> 28, no.
    4 (2020). <a href="https://doi.org/10.1364/oe.383111">https://doi.org/10.1364/oe.383111</a>.
  ieee: 'J. Tiedau, T. Schapeler, V. Anant, H. Fedder, C. Silberhorn, and T. Bartley,
    “Single-channel electronic readout of a multipixel superconducting nanowire single
    photon detector,” <i>Optics Express</i>, vol. 28, no. 4, Art. no. 5528, 2020,
    doi: <a href="https://doi.org/10.1364/oe.383111">10.1364/oe.383111</a>.'
  mla: Tiedau, Johannes, et al. “Single-Channel Electronic Readout of a Multipixel
    Superconducting Nanowire Single Photon Detector.” <i>Optics Express</i>, vol.
    28, no. 4, 5528, Optica Publishing Group, 2020, doi:<a href="https://doi.org/10.1364/oe.383111">10.1364/oe.383111</a>.
  short: J. Tiedau, T. Schapeler, V. Anant, H. Fedder, C. Silberhorn, T. Bartley,
    Optics Express 28 (2020).
date_created: 2023-01-22T17:13:35Z
date_updated: 2025-12-18T17:10:24Z
department:
- _id: '288'
- _id: '15'
- _id: '623'
- _id: '230'
doi: 10.1364/oe.383111
intvolume: '        28'
issue: '4'
keyword:
- Atomic and Molecular Physics
- and Optics
language:
- iso: eng
project:
- _id: '237'
  name: 'PhoG: Sub-Poissonian Photon Gun by Coherent Diffusive Photonics - EU Flagship
    Project'
- _id: '209'
  name: 'ISOQC: Quantenkommunikation mit integrierter Optik im Zusammenhang mit supraleitender
    Elektronik'
publication: Optics Express
publication_identifier:
  issn:
  - 1094-4087
publication_status: published
publisher: Optica Publishing Group
status: public
title: Single-channel electronic readout of a multipixel superconducting nanowire
  single photon detector
type: journal_article
user_id: '55629'
volume: 28
year: '2020'
...
---
_id: '20156'
article_number: '33035'
author:
- first_name: Timon
  full_name: Schapeler, Timon
  id: '55629'
  last_name: Schapeler
  orcid: 0000-0001-7652-1716
- first_name: Jan Philipp
  full_name: Höpker, Jan Philipp
  id: '33913'
  last_name: Höpker
- first_name: Tim
  full_name: Bartley, Tim
  id: '49683'
  last_name: Bartley
citation:
  ama: Schapeler T, Höpker JP, Bartley T. Quantum detector tomography of a 2×2 multi-pixel
    array of superconducting nanowire single photon detectors. <i>Optics Express</i>.
    Published online 2020. doi:<a href="https://doi.org/10.1364/oe.404285">10.1364/oe.404285</a>
  apa: Schapeler, T., Höpker, J. P., &#38; Bartley, T. (2020). Quantum detector tomography
    of a 2×2 multi-pixel array of superconducting nanowire single photon detectors.
    <i>Optics Express</i>, Article 33035. <a href="https://doi.org/10.1364/oe.404285">https://doi.org/10.1364/oe.404285</a>
  bibtex: '@article{Schapeler_Höpker_Bartley_2020, title={Quantum detector tomography
    of a 2×2 multi-pixel array of superconducting nanowire single photon detectors},
    DOI={<a href="https://doi.org/10.1364/oe.404285">10.1364/oe.404285</a>}, number={33035},
    journal={Optics Express}, author={Schapeler, Timon and Höpker, Jan Philipp and
    Bartley, Tim}, year={2020} }'
  chicago: Schapeler, Timon, Jan Philipp Höpker, and Tim Bartley. “Quantum Detector
    Tomography of a 2×2 Multi-Pixel Array of Superconducting Nanowire Single Photon
    Detectors.” <i>Optics Express</i>, 2020. <a href="https://doi.org/10.1364/oe.404285">https://doi.org/10.1364/oe.404285</a>.
  ieee: 'T. Schapeler, J. P. Höpker, and T. Bartley, “Quantum detector tomography
    of a 2×2 multi-pixel array of superconducting nanowire single photon detectors,”
    <i>Optics Express</i>, Art. no. 33035, 2020, doi: <a href="https://doi.org/10.1364/oe.404285">10.1364/oe.404285</a>.'
  mla: Schapeler, Timon, et al. “Quantum Detector Tomography of a 2×2 Multi-Pixel
    Array of Superconducting Nanowire Single Photon Detectors.” <i>Optics Express</i>,
    33035, 2020, doi:<a href="https://doi.org/10.1364/oe.404285">10.1364/oe.404285</a>.
  short: T. Schapeler, J.P. Höpker, T. Bartley, Optics Express (2020).
date_created: 2020-10-21T11:02:41Z
date_updated: 2025-12-18T17:08:01Z
department:
- _id: '15'
- _id: '230'
doi: 10.1364/oe.404285
language:
- iso: eng
project:
- _id: '209'
  name: 'ISOQC: Quantenkommunikation mit integrierter Optik im Zusammenhang mit supraleitender
    Elektronik'
publication: Optics Express
publication_identifier:
  issn:
  - 1094-4087
publication_status: published
status: public
title: Quantum detector tomography of a 2×2 multi-pixel array of superconducting nanowire
  single photon detectors
type: journal_article
user_id: '55629'
year: '2020'
...
---
_id: '63038'
author:
- first_name: Masiar
  full_name: Sistani, Masiar
  last_name: Sistani
- first_name: Maximilian G.
  full_name: Bartmann, Maximilian G.
  last_name: Bartmann
- first_name: Nicholas Alexander
  full_name: Güsken, Nicholas Alexander
  id: '112030'
  last_name: Güsken
  orcid: 0000-0002-4816-0666
- first_name: Rupert F.
  full_name: Oulton, Rupert F.
  last_name: Oulton
- first_name: Hamid
  full_name: Keshmiri, Hamid
  last_name: Keshmiri
- first_name: Minh Anh
  full_name: Luong, Minh Anh
  last_name: Luong
- first_name: Zahra Sadre
  full_name: Momtaz, Zahra Sadre
  last_name: Momtaz
- first_name: Martien I.
  full_name: Den Hertog, Martien I.
  last_name: Den Hertog
- first_name: Alois
  full_name: Lugstein, Alois
  last_name: Lugstein
citation:
  ama: Sistani M, Bartmann MG, Güsken NA, et al. Plasmon-Driven Hot Electron Transfer
    at Atomically Sharp Metal–Semiconductor Nanojunctions. <i>ACS Photonics</i>. 2020;7(7):1642-1648.
    doi:<a href="https://doi.org/10.1021/acsphotonics.0c00557">10.1021/acsphotonics.0c00557</a>
  apa: Sistani, M., Bartmann, M. G., Güsken, N. A., Oulton, R. F., Keshmiri, H., Luong,
    M. A., Momtaz, Z. S., Den Hertog, M. I., &#38; Lugstein, A. (2020). Plasmon-Driven
    Hot Electron Transfer at Atomically Sharp Metal–Semiconductor Nanojunctions. <i>ACS
    Photonics</i>, <i>7</i>(7), 1642–1648. <a href="https://doi.org/10.1021/acsphotonics.0c00557">https://doi.org/10.1021/acsphotonics.0c00557</a>
  bibtex: '@article{Sistani_Bartmann_Güsken_Oulton_Keshmiri_Luong_Momtaz_Den Hertog_Lugstein_2020,
    title={Plasmon-Driven Hot Electron Transfer at Atomically Sharp Metal–Semiconductor
    Nanojunctions}, volume={7}, DOI={<a href="https://doi.org/10.1021/acsphotonics.0c00557">10.1021/acsphotonics.0c00557</a>},
    number={7}, journal={ACS Photonics}, publisher={American Chemical Society (ACS)},
    author={Sistani, Masiar and Bartmann, Maximilian G. and Güsken, Nicholas Alexander
    and Oulton, Rupert F. and Keshmiri, Hamid and Luong, Minh Anh and Momtaz, Zahra
    Sadre and Den Hertog, Martien I. and Lugstein, Alois}, year={2020}, pages={1642–1648}
    }'
  chicago: 'Sistani, Masiar, Maximilian G. Bartmann, Nicholas Alexander Güsken, Rupert
    F. Oulton, Hamid Keshmiri, Minh Anh Luong, Zahra Sadre Momtaz, Martien I. Den
    Hertog, and Alois Lugstein. “Plasmon-Driven Hot Electron Transfer at Atomically
    Sharp Metal–Semiconductor Nanojunctions.” <i>ACS Photonics</i> 7, no. 7 (2020):
    1642–48. <a href="https://doi.org/10.1021/acsphotonics.0c00557">https://doi.org/10.1021/acsphotonics.0c00557</a>.'
  ieee: 'M. Sistani <i>et al.</i>, “Plasmon-Driven Hot Electron Transfer at Atomically
    Sharp Metal–Semiconductor Nanojunctions,” <i>ACS Photonics</i>, vol. 7, no. 7,
    pp. 1642–1648, 2020, doi: <a href="https://doi.org/10.1021/acsphotonics.0c00557">10.1021/acsphotonics.0c00557</a>.'
  mla: Sistani, Masiar, et al. “Plasmon-Driven Hot Electron Transfer at Atomically
    Sharp Metal–Semiconductor Nanojunctions.” <i>ACS Photonics</i>, vol. 7, no. 7,
    American Chemical Society (ACS), 2020, pp. 1642–48, doi:<a href="https://doi.org/10.1021/acsphotonics.0c00557">10.1021/acsphotonics.0c00557</a>.
  short: M. Sistani, M.G. Bartmann, N.A. Güsken, R.F. Oulton, H. Keshmiri, M.A. Luong,
    Z.S. Momtaz, M.I. Den Hertog, A. Lugstein, ACS Photonics 7 (2020) 1642–1648.
date_created: 2025-12-11T20:31:21Z
date_updated: 2026-01-08T16:08:03Z
department:
- _id: '623'
- _id: '15'
- _id: '230'
doi: 10.1021/acsphotonics.0c00557
intvolume: '         7'
issue: '7'
language:
- iso: eng
page: 1642-1648
publication: ACS Photonics
publication_identifier:
  issn:
  - 2330-4022
  - 2330-4022
publication_status: published
publisher: American Chemical Society (ACS)
status: public
title: Plasmon-Driven Hot Electron Transfer at Atomically Sharp Metal–Semiconductor
  Nanojunctions
type: journal_article
user_id: '112030'
volume: 7
year: '2020'
...
---
_id: '63042'
author:
- first_name: Masiar
  full_name: Sistani, Masiar
  last_name: Sistani
- first_name: Maximilian G.
  full_name: Bartmann, Maximilian G.
  last_name: Bartmann
- first_name: Nicholas Alexander
  full_name: Güsken, Nicholas Alexander
  id: '112030'
  last_name: Güsken
  orcid: 0000-0002-4816-0666
- first_name: Rupert F.
  full_name: Oulton, Rupert F.
  last_name: Oulton
- first_name: Hamid
  full_name: Keshmiri, Hamid
  last_name: Keshmiri
- first_name: Minh Anh
  full_name: Luong, Minh Anh
  last_name: Luong
- first_name: Eric
  full_name: Robin, Eric
  last_name: Robin
- first_name: Martien I.
  full_name: den Hertog, Martien I.
  last_name: den Hertog
- first_name: Alois
  full_name: Lugstein, Alois
  last_name: Lugstein
citation:
  ama: Sistani M, Bartmann MG, Güsken NA, et al. Stimulated Raman Scattering in Ge
    Nanowires. <i>The Journal of Physical Chemistry C</i>. 2020;124(25):13872-13877.
    doi:<a href="https://doi.org/10.1021/acs.jpcc.0c02602">10.1021/acs.jpcc.0c02602</a>
  apa: Sistani, M., Bartmann, M. G., Güsken, N. A., Oulton, R. F., Keshmiri, H., Luong,
    M. A., Robin, E., den Hertog, M. I., &#38; Lugstein, A. (2020). Stimulated Raman
    Scattering in Ge Nanowires. <i>The Journal of Physical Chemistry C</i>, <i>124</i>(25),
    13872–13877. <a href="https://doi.org/10.1021/acs.jpcc.0c02602">https://doi.org/10.1021/acs.jpcc.0c02602</a>
  bibtex: '@article{Sistani_Bartmann_Güsken_Oulton_Keshmiri_Luong_Robin_den Hertog_Lugstein_2020,
    title={Stimulated Raman Scattering in Ge Nanowires}, volume={124}, DOI={<a href="https://doi.org/10.1021/acs.jpcc.0c02602">10.1021/acs.jpcc.0c02602</a>},
    number={25}, journal={The Journal of Physical Chemistry C}, publisher={American
    Chemical Society (ACS)}, author={Sistani, Masiar and Bartmann, Maximilian G. and
    Güsken, Nicholas Alexander and Oulton, Rupert F. and Keshmiri, Hamid and Luong,
    Minh Anh and Robin, Eric and den Hertog, Martien I. and Lugstein, Alois}, year={2020},
    pages={13872–13877} }'
  chicago: 'Sistani, Masiar, Maximilian G. Bartmann, Nicholas Alexander Güsken, Rupert
    F. Oulton, Hamid Keshmiri, Minh Anh Luong, Eric Robin, Martien I. den Hertog,
    and Alois Lugstein. “Stimulated Raman Scattering in Ge Nanowires.” <i>The Journal
    of Physical Chemistry C</i> 124, no. 25 (2020): 13872–77. <a href="https://doi.org/10.1021/acs.jpcc.0c02602">https://doi.org/10.1021/acs.jpcc.0c02602</a>.'
  ieee: 'M. Sistani <i>et al.</i>, “Stimulated Raman Scattering in Ge Nanowires,”
    <i>The Journal of Physical Chemistry C</i>, vol. 124, no. 25, pp. 13872–13877,
    2020, doi: <a href="https://doi.org/10.1021/acs.jpcc.0c02602">10.1021/acs.jpcc.0c02602</a>.'
  mla: Sistani, Masiar, et al. “Stimulated Raman Scattering in Ge Nanowires.” <i>The
    Journal of Physical Chemistry C</i>, vol. 124, no. 25, American Chemical Society
    (ACS), 2020, pp. 13872–77, doi:<a href="https://doi.org/10.1021/acs.jpcc.0c02602">10.1021/acs.jpcc.0c02602</a>.
  short: M. Sistani, M.G. Bartmann, N.A. Güsken, R.F. Oulton, H. Keshmiri, M.A. Luong,
    E. Robin, M.I. den Hertog, A. Lugstein, The Journal of Physical Chemistry C 124
    (2020) 13872–13877.
date_created: 2025-12-11T20:36:32Z
date_updated: 2026-01-08T16:08:10Z
department:
- _id: '623'
- _id: '15'
- _id: '230'
doi: 10.1021/acs.jpcc.0c02602
intvolume: '       124'
issue: '25'
language:
- iso: eng
page: 13872-13877
publication: The Journal of Physical Chemistry C
publication_identifier:
  issn:
  - 1932-7447
  - 1932-7455
publication_status: published
publisher: American Chemical Society (ACS)
status: public
title: Stimulated Raman Scattering in Ge Nanowires
type: journal_article
user_id: '112030'
volume: 124
year: '2020'
...
---
_id: '39966'
author:
- first_name: Jens
  full_name: Förstner, Jens
  id: '158'
  last_name: Förstner
  orcid: 0000-0001-7059-9862
- first_name: A.
  full_name: Widhalm, A.
  last_name: Widhalm
- first_name: A.
  full_name: Mukherjee, A.
  last_name: Mukherjee
- first_name: S.
  full_name: Krehs, S.
  last_name: Krehs
- first_name: B.
  full_name: Jonas, B.
  last_name: Jonas
- first_name: K.
  full_name: Spychala, K.
  last_name: Spychala
- first_name: Jens
  full_name: Förstner, Jens
  id: '158'
  last_name: Förstner
  orcid: 0000-0001-7059-9862
- first_name: Andreas
  full_name: Thiede, Andreas
  id: '538'
  last_name: Thiede
- first_name: Dirk
  full_name: Reuter, Dirk
  id: '37763'
  last_name: Reuter
- first_name: Artur
  full_name: Zrenner, Artur
  id: '606'
  last_name: Zrenner
  orcid: 0000-0002-5190-0944
citation:
  ama: 'Förstner J, Widhalm A, Mukherjee A, et al. Ultrafast electric control of a
    single QD exciton. In: <i>11th International Conference on Quantum Dots</i>. ;
    2020.'
  apa: Förstner, J., Widhalm, A., Mukherjee, A., Krehs, S., Jonas, B., Spychala, K.,
    Förstner, J., Thiede, A., Reuter, D., &#38; Zrenner, A. (2020). Ultrafast electric
    control of a single QD exciton. <i>11th International Conference on Quantum Dots</i>.
  bibtex: '@inproceedings{Förstner_Widhalm_Mukherjee_Krehs_Jonas_Spychala_Förstner_Thiede_Reuter_Zrenner_2020,
    place={Munich/Germany}, title={Ultrafast electric control of a single QD exciton},
    booktitle={11th International Conference on Quantum Dots}, author={Förstner, Jens
    and Widhalm, A. and Mukherjee, A. and Krehs, S. and Jonas, B. and Spychala, K.
    and Förstner, Jens and Thiede, Andreas and Reuter, Dirk and Zrenner, Artur}, year={2020}
    }'
  chicago: Förstner, Jens, A. Widhalm, A. Mukherjee, S. Krehs, B. Jonas, K. Spychala,
    Jens Förstner, Andreas Thiede, Dirk Reuter, and Artur Zrenner. “Ultrafast Electric
    Control of a Single QD Exciton.” In <i>11th International Conference on Quantum
    Dots</i>. Munich/Germany, 2020.
  ieee: J. Förstner <i>et al.</i>, “Ultrafast electric control of a single QD exciton,”
    2020.
  mla: Förstner, Jens, et al. “Ultrafast Electric Control of a Single QD Exciton.”
    <i>11th International Conference on Quantum Dots</i>, 2020.
  short: 'J. Förstner, A. Widhalm, A. Mukherjee, S. Krehs, B. Jonas, K. Spychala,
    J. Förstner, A. Thiede, D. Reuter, A. Zrenner, in: 11th International Conference
    on Quantum Dots, Munich/Germany, 2020.'
date_created: 2023-01-25T11:11:42Z
date_updated: 2025-02-12T07:53:06Z
department:
- _id: '61'
- _id: '230'
- _id: '429'
- _id: '51'
language:
- iso: eng
place: Munich/Germany
publication: 11th International Conference on Quantum Dots
status: public
title: Ultrafast electric control of a single QD exciton
type: conference_abstract
user_id: '42514'
year: '2020'
...
---
_id: '24026'
abstract:
- lang: eng
  text: In this paper we present a new system concept for an optoelectronic wireless
    phased array system. Like in a conventional phased array system with optical carrier
    distribution, optical fibers are used to distribute the carrier from the basestation
    to the wireless frontends. However in contrast to prior concepts, we propose to
    use an optical IQ return path from the wireless frontends back to the basestation.
    Furthermore, we reuse the optical carrier signal for the IQ return path which
    allows to avoid local oscillator lasers in the wireless frontends and reduces
    the hardware effort significantly. The system concept allows to integrate all
    components of an optoelectronic wireless frontend in a single chip using silicon
    photonics technology.
author:
- first_name: Stephan
  full_name: Kruse, Stephan
  id: '38254'
  last_name: Kruse
- first_name: Christian
  full_name: Kress, Christian
  id: '13256'
  last_name: Kress
- first_name: Christoph
  full_name: Scheytt, Christoph
  id: '37144'
  last_name: Scheytt
  orcid: https://orcid.org/0000-0002-5950-6618
- first_name: Heiko G.
  full_name: Kurz, Heiko G.
  last_name: Kurz
- first_name: Thomas
  full_name: Schneider, Thomas
  last_name: Schneider
citation:
  ama: 'Kruse S, Kress C, Scheytt C, Kurz HG, Schneider T. Analysis and Simulation
    of a Wireless Phased Array System with Optical Carrier Distribution and an Optical
    IQ Return Path. In: <i>GeMiC 2020 - German Microwave Conference</i>. ; 2020.'
  apa: Kruse, S., Kress, C., Scheytt, C., Kurz, H. G., &#38; Schneider, T. (2020).
    Analysis and Simulation of a Wireless Phased Array System with Optical Carrier
    Distribution and an Optical IQ Return Path. <i>GeMiC 2020 - German Microwave Conference</i>.
  bibtex: '@inproceedings{Kruse_Kress_Scheytt_Kurz_Schneider_2020, place={Cottbus,
    Germany}, title={Analysis and Simulation of a Wireless Phased Array System with
    Optical Carrier Distribution and an Optical IQ Return Path}, booktitle={GeMiC
    2020 - German Microwave Conference}, author={Kruse, Stephan and Kress, Christian
    and Scheytt, Christoph and Kurz, Heiko G. and Schneider, Thomas}, year={2020}
    }'
  chicago: Kruse, Stephan, Christian Kress, Christoph Scheytt, Heiko G. Kurz, and
    Thomas Schneider. “Analysis and Simulation of a Wireless Phased Array System with
    Optical Carrier Distribution and an Optical IQ Return Path.” In <i>GeMiC 2020
    - German Microwave Conference</i>. Cottbus, Germany, 2020.
  ieee: S. Kruse, C. Kress, C. Scheytt, H. G. Kurz, and T. Schneider, “Analysis and
    Simulation of a Wireless Phased Array System with Optical Carrier Distribution
    and an Optical IQ Return Path,” 2020.
  mla: Kruse, Stephan, et al. “Analysis and Simulation of a Wireless Phased Array
    System with Optical Carrier Distribution and an Optical IQ Return Path.” <i>GeMiC
    2020 - German Microwave Conference</i>, 2020.
  short: 'S. Kruse, C. Kress, C. Scheytt, H.G. Kurz, T. Schneider, in: GeMiC 2020
    - German Microwave Conference, Cottbus, Germany, 2020.'
date_created: 2021-09-09T11:50:18Z
date_updated: 2025-02-25T06:02:48Z
department:
- _id: '58'
- _id: '230'
language:
- iso: eng
place: Cottbus, Germany
publication: GeMiC 2020 - German Microwave Conference
related_material:
  link:
  - relation: research_paper
    url: https://ieeexplore.ieee.org/document/9080232
status: public
title: Analysis and Simulation of a Wireless Phased Array System with Optical Carrier
  Distribution and an Optical IQ Return Path
type: conference
user_id: '38254'
year: '2020'
...
---
_id: '23831'
author:
- first_name: Elias
  full_name: Baron, Elias
  last_name: Baron
- first_name: Rüdiger
  full_name: Goldhahn, Rüdiger
  last_name: Goldhahn
- first_name: Michael
  full_name: Deppe, Michael
  last_name: Deppe
- first_name: Donat Josef
  full_name: As, Donat Josef
  id: '14'
  last_name: As
  orcid: 0000-0003-1121-3565
- first_name: Martin
  full_name: Feneberg, Martin
  last_name: Feneberg
citation:
  ama: Baron E, Goldhahn R, Deppe M, As DJ, Feneberg M. Influence of the free-electron
    concentration on the optical properties of zincblende GaN up to 1×1020cm−3. <i>Physical
    Review Materials</i>. 2019. doi:<a href="https://doi.org/10.1103/physrevmaterials.3.104603">10.1103/physrevmaterials.3.104603</a>
  apa: Baron, E., Goldhahn, R., Deppe, M., As, D. J., &#38; Feneberg, M. (2019). Influence
    of the free-electron concentration on the optical properties of zincblende GaN
    up to 1×1020cm−3. <i>Physical Review Materials</i>. <a href="https://doi.org/10.1103/physrevmaterials.3.104603">https://doi.org/10.1103/physrevmaterials.3.104603</a>
  bibtex: '@article{Baron_Goldhahn_Deppe_As_Feneberg_2019, title={Influence of the
    free-electron concentration on the optical properties of zincblende GaN up to
    1×1020cm−3}, DOI={<a href="https://doi.org/10.1103/physrevmaterials.3.104603">10.1103/physrevmaterials.3.104603</a>},
    journal={Physical Review Materials}, author={Baron, Elias and Goldhahn, Rüdiger
    and Deppe, Michael and As, Donat Josef and Feneberg, Martin}, year={2019} }'
  chicago: Baron, Elias, Rüdiger Goldhahn, Michael Deppe, Donat Josef As, and Martin
    Feneberg. “Influence of the Free-Electron Concentration on the Optical Properties
    of Zincblende GaN up to 1×1020cm−3.” <i>Physical Review Materials</i>, 2019. <a
    href="https://doi.org/10.1103/physrevmaterials.3.104603">https://doi.org/10.1103/physrevmaterials.3.104603</a>.
  ieee: E. Baron, R. Goldhahn, M. Deppe, D. J. As, and M. Feneberg, “Influence of
    the free-electron concentration on the optical properties of zincblende GaN up
    to 1×1020cm−3,” <i>Physical Review Materials</i>, 2019.
  mla: Baron, Elias, et al. “Influence of the Free-Electron Concentration on the Optical
    Properties of Zincblende GaN up to 1×1020cm−3.” <i>Physical Review Materials</i>,
    2019, doi:<a href="https://doi.org/10.1103/physrevmaterials.3.104603">10.1103/physrevmaterials.3.104603</a>.
  short: E. Baron, R. Goldhahn, M. Deppe, D.J. As, M. Feneberg, Physical Review Materials
    (2019).
date_created: 2021-09-07T08:40:08Z
date_updated: 2022-01-06T06:56:01Z
department:
- _id: '230'
- _id: '429'
doi: 10.1103/physrevmaterials.3.104603
language:
- iso: eng
publication: Physical Review Materials
publication_identifier:
  issn:
  - 2475-9953
publication_status: published
status: public
title: Influence of the free-electron concentration on the optical properties of zincblende
  GaN up to 1×1020cm−3
type: journal_article
user_id: '14'
year: '2019'
...
---
_id: '7800'
author:
- first_name: Tobias
  full_name: Henksmeier, Tobias
  last_name: Henksmeier
- first_name: Stepan
  full_name: Shvarkov, Stepan
  last_name: Shvarkov
- first_name: Alexander
  full_name: Trapp, Alexander
  last_name: Trapp
- first_name: Dirk
  full_name: Reuter, Dirk
  id: '37763'
  last_name: Reuter
citation:
  ama: Henksmeier T, Shvarkov S, Trapp A, Reuter D. Molecular beam epitaxy growth
    and temperature-dependent electrical characterization of carbon-doped GaAs on
    GaAs(1 1 1)B. <i>Journal of Crystal Growth</i>. 2019;512:164-168. doi:<a href="https://doi.org/10.1016/j.jcrysgro.2019.02.006">10.1016/j.jcrysgro.2019.02.006</a>
  apa: Henksmeier, T., Shvarkov, S., Trapp, A., &#38; Reuter, D. (2019). Molecular
    beam epitaxy growth and temperature-dependent electrical characterization of carbon-doped
    GaAs on GaAs(1 1 1)B. <i>Journal of Crystal Growth</i>, <i>512</i>, 164–168. <a
    href="https://doi.org/10.1016/j.jcrysgro.2019.02.006">https://doi.org/10.1016/j.jcrysgro.2019.02.006</a>
  bibtex: '@article{Henksmeier_Shvarkov_Trapp_Reuter_2019, title={Molecular beam epitaxy
    growth and temperature-dependent electrical characterization of carbon-doped GaAs
    on GaAs(1 1 1)B}, volume={512}, DOI={<a href="https://doi.org/10.1016/j.jcrysgro.2019.02.006">10.1016/j.jcrysgro.2019.02.006</a>},
    journal={Journal of Crystal Growth}, publisher={Elsevier BV}, author={Henksmeier,
    Tobias and Shvarkov, Stepan and Trapp, Alexander and Reuter, Dirk}, year={2019},
    pages={164–168} }'
  chicago: 'Henksmeier, Tobias, Stepan Shvarkov, Alexander Trapp, and Dirk Reuter.
    “Molecular Beam Epitaxy Growth and Temperature-Dependent Electrical Characterization
    of Carbon-Doped GaAs on GaAs(1 1 1)B.” <i>Journal of Crystal Growth</i> 512 (2019):
    164–68. <a href="https://doi.org/10.1016/j.jcrysgro.2019.02.006">https://doi.org/10.1016/j.jcrysgro.2019.02.006</a>.'
  ieee: T. Henksmeier, S. Shvarkov, A. Trapp, and D. Reuter, “Molecular beam epitaxy
    growth and temperature-dependent electrical characterization of carbon-doped GaAs
    on GaAs(1 1 1)B,” <i>Journal of Crystal Growth</i>, vol. 512, pp. 164–168, 2019.
  mla: Henksmeier, Tobias, et al. “Molecular Beam Epitaxy Growth and Temperature-Dependent
    Electrical Characterization of Carbon-Doped GaAs on GaAs(1 1 1)B.” <i>Journal
    of Crystal Growth</i>, vol. 512, Elsevier BV, 2019, pp. 164–68, doi:<a href="https://doi.org/10.1016/j.jcrysgro.2019.02.006">10.1016/j.jcrysgro.2019.02.006</a>.
  short: T. Henksmeier, S. Shvarkov, A. Trapp, D. Reuter, Journal of Crystal Growth
    512 (2019) 164–168.
date_created: 2019-02-20T07:37:27Z
date_updated: 2022-01-06T07:03:46Z
department:
- _id: '15'
- _id: '230'
doi: 10.1016/j.jcrysgro.2019.02.006
intvolume: '       512'
language:
- iso: eng
page: 164-168
publication: Journal of Crystal Growth
publication_identifier:
  issn:
  - 0022-0248
publication_status: published
publisher: Elsevier BV
status: public
title: Molecular beam epitaxy growth and temperature-dependent electrical characterization
  of carbon-doped GaAs on GaAs(1 1 1)B
type: journal_article
user_id: '42514'
volume: 512
year: '2019'
...
---
_id: '8646'
article_number: '095703'
author:
- first_name: M.
  full_name: Deppe, M.
  last_name: Deppe
- first_name: J. W.
  full_name: Gerlach, J. W.
  last_name: Gerlach
- first_name: S.
  full_name: Shvarkov, S.
  last_name: Shvarkov
- first_name: D.
  full_name: Rogalla, D.
  last_name: Rogalla
- first_name: H.-W.
  full_name: Becker, H.-W.
  last_name: Becker
- first_name: Dirk
  full_name: Reuter, Dirk
  id: '37763'
  last_name: Reuter
- first_name: Donat Josef
  full_name: As, Donat Josef
  id: '14'
  last_name: As
  orcid: 0000-0003-1121-3565
citation:
  ama: Deppe M, Gerlach JW, Shvarkov S, et al. Germanium doping of cubic GaN grown
    by molecular beam epitaxy. <i>Journal of Applied Physics</i>. 2019. doi:<a href="https://doi.org/10.1063/1.5066095">10.1063/1.5066095</a>
  apa: Deppe, M., Gerlach, J. W., Shvarkov, S., Rogalla, D., Becker, H.-W., Reuter,
    D., &#38; As, D. J. (2019). Germanium doping of cubic GaN grown by molecular beam
    epitaxy. <i>Journal of Applied Physics</i>. <a href="https://doi.org/10.1063/1.5066095">https://doi.org/10.1063/1.5066095</a>
  bibtex: '@article{Deppe_Gerlach_Shvarkov_Rogalla_Becker_Reuter_As_2019, title={Germanium
    doping of cubic GaN grown by molecular beam epitaxy}, DOI={<a href="https://doi.org/10.1063/1.5066095">10.1063/1.5066095</a>},
    number={095703}, journal={Journal of Applied Physics}, author={Deppe, M. and Gerlach,
    J. W. and Shvarkov, S. and Rogalla, D. and Becker, H.-W. and Reuter, Dirk and
    As, Donat Josef}, year={2019} }'
  chicago: Deppe, M., J. W. Gerlach, S. Shvarkov, D. Rogalla, H.-W. Becker, Dirk Reuter,
    and Donat Josef As. “Germanium Doping of Cubic GaN Grown by Molecular Beam Epitaxy.”
    <i>Journal of Applied Physics</i>, 2019. <a href="https://doi.org/10.1063/1.5066095">https://doi.org/10.1063/1.5066095</a>.
  ieee: M. Deppe <i>et al.</i>, “Germanium doping of cubic GaN grown by molecular
    beam epitaxy,” <i>Journal of Applied Physics</i>, 2019.
  mla: Deppe, M., et al. “Germanium Doping of Cubic GaN Grown by Molecular Beam Epitaxy.”
    <i>Journal of Applied Physics</i>, 095703, 2019, doi:<a href="https://doi.org/10.1063/1.5066095">10.1063/1.5066095</a>.
  short: M. Deppe, J.W. Gerlach, S. Shvarkov, D. Rogalla, H.-W. Becker, D. Reuter,
    D.J. As, Journal of Applied Physics (2019).
date_created: 2019-03-26T12:48:57Z
date_updated: 2022-01-06T07:03:58Z
department:
- _id: '230'
- _id: '429'
doi: 10.1063/1.5066095
language:
- iso: eng
project:
- _id: '67'
  name: TRR 142 - Subproject B2
publication: Journal of Applied Physics
publication_identifier:
  issn:
  - 0021-8979
  - 1089-7550
publication_status: published
status: public
title: Germanium doping of cubic GaN grown by molecular beam epitaxy
type: journal_article
user_id: '14'
year: '2019'
...
---
_id: '8797'
abstract:
- lang: eng
  text: Free from phase-matching constraints, plasmonic metasurfaces have contributed
    significantly to the control of optical nonlinearity and enhancement of nonlinear
    generation efficiency by engineering subwavelength meta-atoms. However, high dissipative
    losses and inevitable thermal heating limit their applicability in nonlinear nanophotonics.
    All-dielectric metasurfaces, supporting both electric and magnetic Mie-type resonances
    in their nanostructures, have appeared as a promising alternative to nonlinear
    plasmonics. High-index dielectric nanostructures, allowing additional magnetic
    resonances, can induce magnetic nonlinear effects, which, along with electric
    nonlinearities, increase the nonlinear conversion efficiency. In addition, low
    dissipative losses and high damage thresholds provide an extra degree of freedom
    for operating at high pump intensities, resulting in a considerable enhancement
    of the nonlinear processes. We discuss the current state of the art in the intensely
    developing area of all-dielectric nonlinear nanostructures and metasurfaces, including
    the role of Mie modes, Fano resonances, and anapole moments for harmonic generation,
    wave mixing, and ultrafast optical switching. Furthermore, we review the recent
    progress in the nonlinear phase and wavefront control using all-dielectric metasurfaces.
    We discuss techniques to realize all-dielectric metasurfaces for multifunctional
    applications and generation of second-order nonlinear processes from complementary
    metal–oxide–semiconductor-compatible materials.
article_type: review
author:
- first_name: Basudeb
  full_name: Sain, Basudeb
  last_name: Sain
- first_name: Cedrik
  full_name: Meier, Cedrik
  id: '20798'
  last_name: Meier
  orcid: https://orcid.org/0000-0002-3787-3572
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
citation:
  ama: 'Sain B, Meier C, Zentgraf T. Nonlinear optics in all-dielectric nanoantennas
    and metasurfaces: a review. <i>Advanced Photonics</i>. 2019;1(2):024002. doi:<a
    href="https://doi.org/10.1117/1.ap.1.2.024002">10.1117/1.ap.1.2.024002</a>'
  apa: 'Sain, B., Meier, C., &#38; Zentgraf, T. (2019). Nonlinear optics in all-dielectric
    nanoantennas and metasurfaces: a review. <i>Advanced Photonics</i>, <i>1</i>(2),
    024002. <a href="https://doi.org/10.1117/1.ap.1.2.024002">https://doi.org/10.1117/1.ap.1.2.024002</a>'
  bibtex: '@article{Sain_Meier_Zentgraf_2019, title={Nonlinear optics in all-dielectric
    nanoantennas and metasurfaces: a review}, volume={1}, DOI={<a href="https://doi.org/10.1117/1.ap.1.2.024002">10.1117/1.ap.1.2.024002</a>},
    number={2}, journal={Advanced Photonics}, author={Sain, Basudeb and Meier, Cedrik
    and Zentgraf, Thomas}, year={2019}, pages={024002} }'
  chicago: 'Sain, Basudeb, Cedrik Meier, and Thomas Zentgraf. “Nonlinear Optics in
    All-Dielectric Nanoantennas and Metasurfaces: A Review.” <i>Advanced Photonics</i>
    1, no. 2 (2019): 024002. <a href="https://doi.org/10.1117/1.ap.1.2.024002">https://doi.org/10.1117/1.ap.1.2.024002</a>.'
  ieee: 'B. Sain, C. Meier, and T. Zentgraf, “Nonlinear optics in all-dielectric nanoantennas
    and metasurfaces: a review,” <i>Advanced Photonics</i>, vol. 1, no. 2, p. 024002,
    2019.'
  mla: 'Sain, Basudeb, et al. “Nonlinear Optics in All-Dielectric Nanoantennas and
    Metasurfaces: A Review.” <i>Advanced Photonics</i>, vol. 1, no. 2, 2019, p. 024002,
    doi:<a href="https://doi.org/10.1117/1.ap.1.2.024002">10.1117/1.ap.1.2.024002</a>.'
  short: B. Sain, C. Meier, T. Zentgraf, Advanced Photonics 1 (2019) 024002.
date_created: 2019-04-04T06:20:14Z
date_updated: 2022-01-06T07:04:02Z
ddc:
- '530'
department:
- _id: '15'
- _id: '230'
- _id: '429'
- _id: '289'
doi: 10.1117/1.ap.1.2.024002
file:
- access_level: closed
  content_type: application/pdf
  creator: zentgraf
  date_created: 2019-12-14T14:24:36Z
  date_updated: 2019-12-14T14:24:36Z
  file_id: '15330'
  file_name: AdvPhoton_2019.pdf
  file_size: 5275552
  relation: main_file
  success: 1
file_date_updated: 2019-12-14T14:24:36Z
has_accepted_license: '1'
intvolume: '         1'
issue: '2'
language:
- iso: eng
main_file_link:
- open_access: '1'
  url: https://www.spiedigitallibrary.org/journals/Advanced-Photonics/volume-1/issue-02/024002/Nonlinear-optics-in-all-dielectric-nanoantennas-and-metasurfaces--a/10.1117/1.AP.1.2.024002.full
oa: '1'
page: '024002'
project:
- _id: '53'
  name: TRR 142
- _id: '75'
  name: TRR 142 - Subproject C5
- _id: '56'
  name: TRR 142 - Project Area C
publication: Advanced Photonics
publication_identifier:
  issn:
  - 2577-5421
publication_status: published
quality_controlled: '1'
status: public
title: 'Nonlinear optics in all-dielectric nanoantennas and metasurfaces: a review'
type: journal_article
user_id: '30525'
volume: 1
year: '2019'
...
---
_id: '9698'
article_number: '073103'
author:
- first_name: C.
  full_name: Golla, C.
  last_name: Golla
- first_name: N.
  full_name: Weber, N.
  last_name: Weber
- first_name: Cedrik
  full_name: Meier, Cedrik
  id: '20798'
  last_name: Meier
  orcid: https://orcid.org/0000-0002-3787-3572
citation:
  ama: Golla C, Weber N, Meier C. Zinc oxide based dielectric nanoantennas for efficient
    nonlinear frequency conversion. <i>Journal of Applied Physics</i>. 2019;125(7).
    doi:<a href="https://doi.org/10.1063/1.5082720">10.1063/1.5082720</a>
  apa: Golla, C., Weber, N., &#38; Meier, C. (2019). Zinc oxide based dielectric nanoantennas
    for efficient nonlinear frequency conversion. <i>Journal of Applied Physics</i>,
    <i>125</i>(7). <a href="https://doi.org/10.1063/1.5082720">https://doi.org/10.1063/1.5082720</a>
  bibtex: '@article{Golla_Weber_Meier_2019, title={Zinc oxide based dielectric nanoantennas
    for efficient nonlinear frequency conversion}, volume={125}, DOI={<a href="https://doi.org/10.1063/1.5082720">10.1063/1.5082720</a>},
    number={7073103}, journal={Journal of Applied Physics}, author={Golla, C. and
    Weber, N. and Meier, Cedrik}, year={2019} }'
  chicago: Golla, C., N. Weber, and Cedrik Meier. “Zinc Oxide Based Dielectric Nanoantennas
    for Efficient Nonlinear Frequency Conversion.” <i>Journal of Applied Physics</i>
    125, no. 7 (2019). <a href="https://doi.org/10.1063/1.5082720">https://doi.org/10.1063/1.5082720</a>.
  ieee: C. Golla, N. Weber, and C. Meier, “Zinc oxide based dielectric nanoantennas
    for efficient nonlinear frequency conversion,” <i>Journal of Applied Physics</i>,
    vol. 125, no. 7, 2019.
  mla: Golla, C., et al. “Zinc Oxide Based Dielectric Nanoantennas for Efficient Nonlinear
    Frequency Conversion.” <i>Journal of Applied Physics</i>, vol. 125, no. 7, 073103,
    2019, doi:<a href="https://doi.org/10.1063/1.5082720">10.1063/1.5082720</a>.
  short: C. Golla, N. Weber, C. Meier, Journal of Applied Physics 125 (2019).
date_created: 2019-05-08T07:06:11Z
date_updated: 2022-01-06T07:04:18Z
department:
- _id: '15'
- _id: '35'
- _id: '287'
- _id: '230'
doi: 10.1063/1.5082720
intvolume: '       125'
issue: '7'
language:
- iso: eng
project:
- _id: '53'
  name: TRR 142
- _id: '55'
  name: TRR 142 - Project Area B
- _id: '66'
  name: TRR 142 - Subproject B1
- _id: '56'
  name: TRR 142 - Project Area C
- _id: '75'
  name: TRR 142 - Subproject C5
publication: Journal of Applied Physics
publication_identifier:
  issn:
  - 0021-8979
  - 1089-7550
publication_status: published
status: public
title: Zinc oxide based dielectric nanoantennas for efficient nonlinear frequency
  conversion
type: journal_article
user_id: '20798'
volume: 125
year: '2019'
...
---
_id: '9897'
article_number: '193104'
author:
- first_name: Maximilian
  full_name: Protte, Maximilian
  last_name: Protte
- first_name: Nils
  full_name: Weber, Nils
  last_name: Weber
- first_name: Christian
  full_name: Golla, Christian
  last_name: Golla
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
- first_name: Cedrik
  full_name: Meier, Cedrik
  id: '20798'
  last_name: Meier
  orcid: https://orcid.org/0000-0002-3787-3572
citation:
  ama: Protte M, Weber N, Golla C, Zentgraf T, Meier C. Strong nonlinear optical response
    from ZnO by coupled and lattice-matched nanoantennas. <i>Journal of Applied Physics</i>.
    2019;125. doi:<a href="https://doi.org/10.1063/1.5093257">10.1063/1.5093257</a>
  apa: Protte, M., Weber, N., Golla, C., Zentgraf, T., &#38; Meier, C. (2019). Strong
    nonlinear optical response from ZnO by coupled and lattice-matched nanoantennas.
    <i>Journal of Applied Physics</i>, <i>125</i>. <a href="https://doi.org/10.1063/1.5093257">https://doi.org/10.1063/1.5093257</a>
  bibtex: '@article{Protte_Weber_Golla_Zentgraf_Meier_2019, title={Strong nonlinear
    optical response from ZnO by coupled and lattice-matched nanoantennas}, volume={125},
    DOI={<a href="https://doi.org/10.1063/1.5093257">10.1063/1.5093257</a>}, number={193104},
    journal={Journal of Applied Physics}, author={Protte, Maximilian and Weber, Nils
    and Golla, Christian and Zentgraf, Thomas and Meier, Cedrik}, year={2019} }'
  chicago: Protte, Maximilian, Nils Weber, Christian Golla, Thomas Zentgraf, and Cedrik
    Meier. “Strong Nonlinear Optical Response from ZnO by Coupled and Lattice-Matched
    Nanoantennas.” <i>Journal of Applied Physics</i> 125 (2019). <a href="https://doi.org/10.1063/1.5093257">https://doi.org/10.1063/1.5093257</a>.
  ieee: M. Protte, N. Weber, C. Golla, T. Zentgraf, and C. Meier, “Strong nonlinear
    optical response from ZnO by coupled and lattice-matched nanoantennas,” <i>Journal
    of Applied Physics</i>, vol. 125, 2019.
  mla: Protte, Maximilian, et al. “Strong Nonlinear Optical Response from ZnO by Coupled
    and Lattice-Matched Nanoantennas.” <i>Journal of Applied Physics</i>, vol. 125,
    193104, 2019, doi:<a href="https://doi.org/10.1063/1.5093257">10.1063/1.5093257</a>.
  short: M. Protte, N. Weber, C. Golla, T. Zentgraf, C. Meier, Journal of Applied
    Physics 125 (2019).
date_created: 2019-05-21T08:35:49Z
date_updated: 2020-08-21T13:52:51Z
department:
- _id: '15'
- _id: '287'
- _id: '35'
- _id: '230'
- _id: '289'
doi: 10.1063/1.5093257
intvolume: '       125'
language:
- iso: eng
project:
- _id: '53'
  name: TRR 142
- _id: '55'
  name: TRR 142 - Project Area B
- _id: '66'
  name: TRR 142 - Subproject B1
- _id: '56'
  name: TRR 142 - Project Area C
- _id: '75'
  name: TRR 142 - Subproject C5
publication: Journal of Applied Physics
publication_identifier:
  issn:
  - 0021-8979
  - 1089-7550
publication_status: published
status: public
title: Strong nonlinear optical response from ZnO by coupled and lattice-matched nanoantennas
type: journal_article
user_id: '30525'
volume: 125
year: '2019'
...
---
_id: '11953'
abstract:
- lang: eng
  text: As flexible optical devices that can manipulate the phase and amplitude of
    light, metasurfaces would clearly benefit from directional optical properties.
    However, single layer metasurface systems consisting of two-dimensional nanoparticle
    arrays exhibit only a weak spatial asymmetry perpendicular to the surface and
    therefore have mostly symmetric transmission features. Here, we present a metasurface
    design principle for nonreciprocal polarization encryption of holographic images.
    Our approach is based on a two-layer plasmonic metasurface design that introduces
    a local asymmetry and generates a bidirectional functionality with full phase
    and amplitude control of the transmitted light. The encoded hologram is designed
    to appear in a particular linear cross-polarization channel, while it is disappearing
    in the reverse propagation direction. Hence, layered metasurface systems can feature
    asymmetric transmission with full phase and amplitude control and therefore expand
    the design freedom in nanoscale optical devices toward asymmetric information
    processing and security features for anticounterfeiting applications.
article_type: original
author:
- first_name: Daniel
  full_name: Frese, Daniel
  last_name: Frese
- first_name: Qunshuo
  full_name: Wei, Qunshuo
  last_name: Wei
- first_name: Yongtian
  full_name: Wang, Yongtian
  last_name: Wang
- first_name: Lingling
  full_name: Huang, Lingling
  last_name: Huang
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
citation:
  ama: Frese D, Wei Q, Wang Y, Huang L, Zentgraf T. Nonreciprocal Asymmetric Polarization
    Encryption by Layered Plasmonic Metasurfaces. <i>Nano Letters</i>. 2019;19(6):3976-3980.
    doi:<a href="https://doi.org/10.1021/acs.nanolett.9b01298">10.1021/acs.nanolett.9b01298</a>
  apa: Frese, D., Wei, Q., Wang, Y., Huang, L., &#38; Zentgraf, T. (2019). Nonreciprocal
    Asymmetric Polarization Encryption by Layered Plasmonic Metasurfaces. <i>Nano
    Letters</i>, <i>19</i>(6), 3976–3980. <a href="https://doi.org/10.1021/acs.nanolett.9b01298">https://doi.org/10.1021/acs.nanolett.9b01298</a>
  bibtex: '@article{Frese_Wei_Wang_Huang_Zentgraf_2019, title={Nonreciprocal Asymmetric
    Polarization Encryption by Layered Plasmonic Metasurfaces}, volume={19}, DOI={<a
    href="https://doi.org/10.1021/acs.nanolett.9b01298">10.1021/acs.nanolett.9b01298</a>},
    number={6}, journal={Nano Letters}, author={Frese, Daniel and Wei, Qunshuo and
    Wang, Yongtian and Huang, Lingling and Zentgraf, Thomas}, year={2019}, pages={3976–3980}
    }'
  chicago: 'Frese, Daniel, Qunshuo Wei, Yongtian Wang, Lingling Huang, and Thomas
    Zentgraf. “Nonreciprocal Asymmetric Polarization Encryption by Layered Plasmonic
    Metasurfaces.” <i>Nano Letters</i> 19, no. 6 (2019): 3976–80. <a href="https://doi.org/10.1021/acs.nanolett.9b01298">https://doi.org/10.1021/acs.nanolett.9b01298</a>.'
  ieee: 'D. Frese, Q. Wei, Y. Wang, L. Huang, and T. Zentgraf, “Nonreciprocal Asymmetric
    Polarization Encryption by Layered Plasmonic Metasurfaces,” <i>Nano Letters</i>,
    vol. 19, no. 6, pp. 3976–3980, 2019, doi: <a href="https://doi.org/10.1021/acs.nanolett.9b01298">10.1021/acs.nanolett.9b01298</a>.'
  mla: Frese, Daniel, et al. “Nonreciprocal Asymmetric Polarization Encryption by
    Layered Plasmonic Metasurfaces.” <i>Nano Letters</i>, vol. 19, no. 6, 2019, pp.
    3976–80, doi:<a href="https://doi.org/10.1021/acs.nanolett.9b01298">10.1021/acs.nanolett.9b01298</a>.
  short: D. Frese, Q. Wei, Y. Wang, L. Huang, T. Zentgraf, Nano Letters 19 (2019)
    3976–3980.
date_created: 2019-07-15T07:55:26Z
date_updated: 2022-01-06T06:51:13Z
department:
- _id: '15'
- _id: '230'
- _id: '289'
- _id: '429'
doi: 10.1021/acs.nanolett.9b01298
external_id:
  pmid:
  - '31050899'
funded_apc: '1'
intvolume: '        19'
issue: '6'
language:
- iso: eng
page: 3976-3980
pmid: '1'
project:
- _id: '54'
  name: TRR 142 - Project Area A
- _id: '65'
  name: TRR 142 - Subproject A8
- _id: '53'
  name: TRR 142
publication: Nano Letters
publication_identifier:
  issn:
  - 1530-6984
  - 1530-6992
publication_status: published
quality_controlled: '1'
status: public
title: Nonreciprocal Asymmetric Polarization Encryption by Layered Plasmonic Metasurfaces
type: journal_article
user_id: '30525'
volume: 19
year: '2019'
...
---
_id: '11955'
article_type: original
author:
- first_name: Tianyou
  full_name: Li, Tianyou
  last_name: Li
- first_name: Qunshuo
  full_name: Wei, Qunshuo
  last_name: Wei
- first_name: Bernhard
  full_name: Reineke, Bernhard
  last_name: Reineke
- first_name: Felicitas
  full_name: Walter, Felicitas
  last_name: Walter
- first_name: Yongtian
  full_name: Wang, Yongtian
  last_name: Wang
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
- first_name: Lingling
  full_name: Huang, Lingling
  last_name: Huang
citation:
  ama: Li T, Wei Q, Reineke B, et al. Reconfigurable metasurface hologram by utilizing
    addressable dynamic pixels. <i>Optics Express</i>. 2019;27(15):21153-21162. doi:<a
    href="https://doi.org/10.1364/oe.27.021153">10.1364/oe.27.021153</a>
  apa: Li, T., Wei, Q., Reineke, B., Walter, F., Wang, Y., Zentgraf, T., &#38; Huang,
    L. (2019). Reconfigurable metasurface hologram by utilizing addressable dynamic
    pixels. <i>Optics Express</i>, <i>27</i>(15), 21153–21162. <a href="https://doi.org/10.1364/oe.27.021153">https://doi.org/10.1364/oe.27.021153</a>
  bibtex: '@article{Li_Wei_Reineke_Walter_Wang_Zentgraf_Huang_2019, title={Reconfigurable
    metasurface hologram by utilizing addressable dynamic pixels}, volume={27}, DOI={<a
    href="https://doi.org/10.1364/oe.27.021153">10.1364/oe.27.021153</a>}, number={15},
    journal={Optics Express}, author={Li, Tianyou and Wei, Qunshuo and Reineke, Bernhard
    and Walter, Felicitas and Wang, Yongtian and Zentgraf, Thomas and Huang, Lingling},
    year={2019}, pages={21153–21162} }'
  chicago: 'Li, Tianyou, Qunshuo Wei, Bernhard Reineke, Felicitas Walter, Yongtian
    Wang, Thomas Zentgraf, and Lingling Huang. “Reconfigurable Metasurface Hologram
    by Utilizing Addressable Dynamic Pixels.” <i>Optics Express</i> 27, no. 15 (2019):
    21153–62. <a href="https://doi.org/10.1364/oe.27.021153">https://doi.org/10.1364/oe.27.021153</a>.'
  ieee: T. Li <i>et al.</i>, “Reconfigurable metasurface hologram by utilizing addressable
    dynamic pixels,” <i>Optics Express</i>, vol. 27, no. 15, pp. 21153–21162, 2019.
  mla: Li, Tianyou, et al. “Reconfigurable Metasurface Hologram by Utilizing Addressable
    Dynamic Pixels.” <i>Optics Express</i>, vol. 27, no. 15, 2019, pp. 21153–62, doi:<a
    href="https://doi.org/10.1364/oe.27.021153">10.1364/oe.27.021153</a>.
  short: T. Li, Q. Wei, B. Reineke, F. Walter, Y. Wang, T. Zentgraf, L. Huang, Optics
    Express 27 (2019) 21153–21162.
date_created: 2019-07-16T06:01:18Z
date_updated: 2022-01-06T06:51:14Z
ddc:
- '530'
department:
- _id: '15'
- _id: '230'
- _id: '289'
doi: 10.1364/oe.27.021153
file:
- access_level: closed
  content_type: application/pdf
  creator: zentgraf
  date_created: 2019-07-16T06:11:30Z
  date_updated: 2019-07-16T06:11:30Z
  file_id: '11957'
  file_name: OptExpress_Li_2019.pdf
  file_size: 1585168
  relation: main_file
  success: 1
file_date_updated: 2019-07-16T06:11:30Z
has_accepted_license: '1'
intvolume: '        27'
issue: '15'
language:
- iso: eng
page: 21153-21162
publication: Optics Express
publication_identifier:
  issn:
  - 1094-4087
publication_status: published
quality_controlled: '1'
status: public
title: Reconfigurable metasurface hologram by utilizing addressable dynamic pixels
type: journal_article
user_id: '30525'
volume: 27
year: '2019'
...
---
_id: '12908'
author:
- first_name: Manfred
  full_name: Hammer, Manfred
  id: '48077'
  last_name: Hammer
  orcid: 0000-0002-6331-9348
- first_name: Lena
  full_name: Ebers, Lena
  id: '40428'
  last_name: Ebers
- first_name: Jens
  full_name: Förstner, Jens
  id: '158'
  last_name: Förstner
  orcid: 0000-0001-7059-9862
citation:
  ama: 'Hammer M, Ebers L, Förstner J. Oblique quasi-lossless excitation of a thin
    silicon slab waveguide: a guided-wave variant of an anti-reflection coating. <i>Journal
    of the Optical Society of America B</i>. 2019;36:2395. doi:<a href="https://doi.org/10.1364/josab.36.002395">10.1364/josab.36.002395</a>'
  apa: 'Hammer, M., Ebers, L., &#38; Förstner, J. (2019). Oblique quasi-lossless excitation
    of a thin silicon slab waveguide: a guided-wave variant of an anti-reflection
    coating. <i>Journal of the Optical Society of America B</i>, <i>36</i>, 2395.
    <a href="https://doi.org/10.1364/josab.36.002395">https://doi.org/10.1364/josab.36.002395</a>'
  bibtex: '@article{Hammer_Ebers_Förstner_2019, title={Oblique quasi-lossless excitation
    of a thin silicon slab waveguide: a guided-wave variant of an anti-reflection
    coating}, volume={36}, DOI={<a href="https://doi.org/10.1364/josab.36.002395">10.1364/josab.36.002395</a>},
    journal={Journal of the Optical Society of America B}, author={Hammer, Manfred
    and Ebers, Lena and Förstner, Jens}, year={2019}, pages={2395} }'
  chicago: 'Hammer, Manfred, Lena Ebers, and Jens Förstner. “Oblique Quasi-Lossless
    Excitation of a Thin Silicon Slab Waveguide: A Guided-Wave Variant of an Anti-Reflection
    Coating.” <i>Journal of the Optical Society of America B</i> 36 (2019): 2395.
    <a href="https://doi.org/10.1364/josab.36.002395">https://doi.org/10.1364/josab.36.002395</a>.'
  ieee: 'M. Hammer, L. Ebers, and J. Förstner, “Oblique quasi-lossless excitation
    of a thin silicon slab waveguide: a guided-wave variant of an anti-reflection
    coating,” <i>Journal of the Optical Society of America B</i>, vol. 36, p. 2395,
    2019.'
  mla: 'Hammer, Manfred, et al. “Oblique Quasi-Lossless Excitation of a Thin Silicon
    Slab Waveguide: A Guided-Wave Variant of an Anti-Reflection Coating.” <i>Journal
    of the Optical Society of America B</i>, vol. 36, 2019, p. 2395, doi:<a href="https://doi.org/10.1364/josab.36.002395">10.1364/josab.36.002395</a>.'
  short: M. Hammer, L. Ebers, J. Förstner, Journal of the Optical Society of America
    B 36 (2019) 2395.
date_created: 2019-08-09T07:07:45Z
date_updated: 2022-01-06T06:51:24Z
ddc:
- '530'
department:
- _id: '61'
- _id: '230'
- _id: '429'
doi: 10.1364/josab.36.002395
file:
- access_level: open_access
  content_type: application/pdf
  creator: fossie
  date_created: 2019-08-09T07:09:04Z
  date_updated: 2019-08-09T07:09:04Z
  file_id: '12909'
  file_name: 2019-07 Hammer - JOSA B - Oblique Quasi-Lossless Excitation of a Thin
    Silicon Slab Waveguide (preprint).pdf
  file_size: 728533
  relation: main_file
file_date_updated: 2019-08-09T07:09:04Z
has_accepted_license: '1'
intvolume: '        36'
keyword:
- tet_topic_waveguides
language:
- iso: eng
oa: '1'
page: '2395'
project:
- _id: '53'
  name: TRR 142
- _id: '56'
  name: TRR 142 - Project Area C
- _id: '75'
  name: TRR 142 - Subproject C5
publication: Journal of the Optical Society of America B
publication_identifier:
  issn:
  - 0740-3224
  - 1520-8540
publication_status: published
status: public
title: 'Oblique quasi-lossless excitation of a thin silicon slab waveguide: a guided-wave
  variant of an anti-reflection coating'
type: journal_article
user_id: '158'
volume: 36
year: '2019'
...
---
_id: '12917'
article_type: original
author:
- first_name: Bernhard
  full_name: Reineke, Bernhard
  last_name: Reineke
- first_name: Basudeb
  full_name: Sain, Basudeb
  last_name: Sain
- first_name: Ruizhe
  full_name: Zhao, Ruizhe
  last_name: Zhao
- first_name: Luca
  full_name: Carletti, Luca
  last_name: Carletti
- first_name: Bingyi
  full_name: Liu, Bingyi
  last_name: Liu
- first_name: Lingling
  full_name: Huang, Lingling
  last_name: Huang
- first_name: Costantino
  full_name: de Angelis, Costantino
  last_name: de Angelis
- first_name: Thomas
  full_name: Zentgraf, Thomas
  id: '30525'
  last_name: Zentgraf
  orcid: 0000-0002-8662-1101
citation:
  ama: Reineke B, Sain B, Zhao R, et al. Silicon metasurfaces for third harmonic geometric
    phase manipulation and multiplexed holography. <i>Nano Letters</i>. 2019;19(9):6585–6591.
    doi:<a href="https://doi.org/10.1021/acs.nanolett.9b02844">10.1021/acs.nanolett.9b02844</a>
  apa: Reineke, B., Sain, B., Zhao, R., Carletti, L., Liu, B., Huang, L., … Zentgraf,
    T. (2019). Silicon metasurfaces for third harmonic geometric phase manipulation
    and multiplexed holography. <i>Nano Letters</i>, <i>19</i>(9), 6585–6591. <a href="https://doi.org/10.1021/acs.nanolett.9b02844">https://doi.org/10.1021/acs.nanolett.9b02844</a>
  bibtex: '@article{Reineke_Sain_Zhao_Carletti_Liu_Huang_de Angelis_Zentgraf_2019,
    title={Silicon metasurfaces for third harmonic geometric phase manipulation and
    multiplexed holography}, volume={19}, DOI={<a href="https://doi.org/10.1021/acs.nanolett.9b02844">10.1021/acs.nanolett.9b02844</a>},
    number={9}, journal={Nano Letters}, author={Reineke, Bernhard and Sain, Basudeb
    and Zhao, Ruizhe and Carletti, Luca and Liu, Bingyi and Huang, Lingling and de
    Angelis, Costantino and Zentgraf, Thomas}, year={2019}, pages={6585–6591} }'
  chicago: 'Reineke, Bernhard, Basudeb Sain, Ruizhe Zhao, Luca Carletti, Bingyi Liu,
    Lingling Huang, Costantino de Angelis, and Thomas Zentgraf. “Silicon Metasurfaces
    for Third Harmonic Geometric Phase Manipulation and Multiplexed Holography.” <i>Nano
    Letters</i> 19, no. 9 (2019): 6585–6591. <a href="https://doi.org/10.1021/acs.nanolett.9b02844">https://doi.org/10.1021/acs.nanolett.9b02844</a>.'
  ieee: B. Reineke <i>et al.</i>, “Silicon metasurfaces for third harmonic geometric
    phase manipulation and multiplexed holography,” <i>Nano Letters</i>, vol. 19,
    no. 9, pp. 6585–6591, 2019.
  mla: Reineke, Bernhard, et al. “Silicon Metasurfaces for Third Harmonic Geometric
    Phase Manipulation and Multiplexed Holography.” <i>Nano Letters</i>, vol. 19,
    no. 9, 2019, pp. 6585–6591, doi:<a href="https://doi.org/10.1021/acs.nanolett.9b02844">10.1021/acs.nanolett.9b02844</a>.
  short: B. Reineke, B. Sain, R. Zhao, L. Carletti, B. Liu, L. Huang, C. de Angelis,
    T. Zentgraf, Nano Letters 19 (2019) 6585–6591.
date_created: 2019-08-14T06:14:21Z
date_updated: 2022-01-06T06:51:25Z
ddc:
- '530'
department:
- _id: '15'
- _id: '230'
- _id: '289'
doi: 10.1021/acs.nanolett.9b02844
file:
- access_level: closed
  content_type: application/pdf
  creator: zentgraf
  date_created: 2019-12-14T14:34:11Z
  date_updated: 2019-12-14T14:34:11Z
  file_id: '15331'
  file_name: NanoLetters_2019.pdf
  file_size: 7514916
  relation: main_file
  success: 1
file_date_updated: 2019-12-14T14:34:11Z
has_accepted_license: '1'
intvolume: '        19'
issue: '9'
language:
- iso: eng
page: 6585–6591
publication: Nano Letters
publication_identifier:
  issn:
  - 1530-6984
  - 1530-6992
publication_status: published
quality_controlled: '1'
status: public
title: Silicon metasurfaces for third harmonic geometric phase manipulation and multiplexed
  holography
type: journal_article
user_id: '30525'
volume: 19
year: '2019'
...
