[{"date_updated":"2023-02-13T08:47:53Z","publication_status":"published","intvolume":"       125","year":"2020","status":"public","title":"Origin of Antibunching in Resonance Fluorescence","author":[{"full_name":"Hanschke, L","first_name":"L","last_name":"Hanschke"},{"full_name":"Schweickert, L","last_name":"Schweickert","first_name":"L"},{"first_name":"J","last_name":"Camilo López Carreño","full_name":"Camilo López Carreño, J"},{"first_name":"E","last_name":"Schöll","full_name":"Schöll, E"},{"full_name":"Zeuner, K.D","first_name":"K.D","last_name":"Zeuner"},{"full_name":"Lettner, T","last_name":"Lettner","first_name":"T"},{"full_name":"Zubizarreta Casalengua, E","last_name":"Zubizarreta Casalengua","first_name":"E"},{"full_name":"Reindl, M","last_name":"Reindl","first_name":"M"},{"full_name":"Covre da Silva, S.F","first_name":"S.F","last_name":"Covre da Silva"},{"full_name":"Trotta, R","last_name":"Trotta","first_name":"R"},{"full_name":"Finley, J.J","last_name":"Finley","first_name":"J.J"},{"last_name":"Rastelli","first_name":"A","full_name":"Rastelli, A"},{"full_name":"Del Valle, E","last_name":"Del Valle","first_name":"E"},{"full_name":"Laussy, F.P","last_name":"Laussy","first_name":"F.P"},{"first_name":"V","last_name":"Zwiller","full_name":"Zwiller, V"},{"full_name":"Müller, K","first_name":"K","last_name":"Müller"},{"full_name":"Jöns, Klaus D.","first_name":"Klaus D.","last_name":"Jöns","id":"85353"}],"user_id":"71124","volume":125,"article_number":"170402","series_title":"Phys. Rev. Lett. ","_id":"41895","language":[{"iso":"ger"}],"citation":{"apa":"Hanschke, L., Schweickert, L., Camilo López Carreño, J., Schöll, E., Zeuner, K. D., Lettner, T., Zubizarreta Casalengua, E., Reindl, M., Covre da Silva, S. F., Trotta, R., Finley, J. J., Rastelli, A., Del Valle, E., Laussy, F. P., Zwiller, V., Müller, K., &#38; Jöns, K. D. (2020). <i>Origin of Antibunching in Resonance Fluorescence</i> (No. 170402; Vol. 125).","ieee":"L. Hanschke <i>et al.</i>, “Origin of Antibunching in Resonance Fluorescence,” vol. 125. 2020.","chicago":"Hanschke, L, L Schweickert, J Camilo López Carreño, E Schöll, K.D Zeuner, T Lettner, E Zubizarreta Casalengua, et al. “Origin of Antibunching in Resonance Fluorescence.” Phys. Rev. Lett. , 2020.","short":"L. Hanschke, L. Schweickert, J. Camilo López Carreño, E. Schöll, K.D. Zeuner, T. Lettner, E. Zubizarreta Casalengua, M. Reindl, S.F. Covre da Silva, R. Trotta, J.J. Finley, A. Rastelli, E. Del Valle, F.P. Laussy, V. Zwiller, K. Müller, K.D. Jöns, 125 (2020).","mla":"Hanschke, L., et al. <i>Origin of Antibunching in Resonance Fluorescence</i>. 170402, 2020.","ama":"Hanschke L, Schweickert L, Camilo López Carreño J, et al. Origin of Antibunching in Resonance Fluorescence. 2020;125.","bibtex":"@article{Hanschke_Schweickert_Camilo López Carreño_Schöll_Zeuner_Lettner_Zubizarreta Casalengua_Reindl_Covre da Silva_Trotta_et al._2020, series={Phys. Rev. Lett. }, title={Origin of Antibunching in Resonance Fluorescence}, volume={125}, number={170402}, author={Hanschke, L and Schweickert, L and Camilo López Carreño, J and Schöll, E and Zeuner, K.D and Lettner, T and Zubizarreta Casalengua, E and Reindl, M and Covre da Silva, S.F and Trotta, R and et al.}, year={2020}, collection={Phys. Rev. Lett. } }"},"type":"conference","department":[{"_id":"623"}],"date_created":"2023-02-08T01:54:24Z"},{"department":[{"_id":"623"}],"type":"conference","date_created":"2023-02-08T02:15:22Z","citation":{"bibtex":"@article{Steinhauer_ Yang, _Gyger_ Lettner_Errando-Herranz_Jöns_Baghban_Gallo_Zichi_Zwiller_2020, series={Appl. Phys. Lett}, title={NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials}, volume={116}, number={171101}, author={Steinhauer, S and  Yang, , L and Gyger, S and  Lettner, T and Errando-Herranz, C and Jöns, Klaus D and Baghban, M.A and Gallo, K and Zichi, J and Zwiller, V}, year={2020}, collection={Appl. Phys. Lett} }","ama":"Steinhauer S,  Yang,  L, Gyger S, et al. NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials. 2020;116.","mla":"Steinhauer, S., et al. <i>NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials</i>. 171101, 2020.","chicago":"Steinhauer, S, L  Yang, , S Gyger, T  Lettner, C Errando-Herranz, Klaus D Jöns, M.A Baghban, K Gallo, J Zichi, and V Zwiller. “NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials.” Appl. Phys. Lett, 2020.","short":"S. Steinhauer, L.  Yang, , S. Gyger, T.  Lettner, C. Errando-Herranz, K.D. Jöns, M.A. Baghban, K. Gallo, J. Zichi, V. Zwiller, 116 (2020).","ieee":"S. Steinhauer <i>et al.</i>, “NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials,” vol. 116. 2020.","apa":"Steinhauer, S.,  Yang, , L., Gyger, S.,  Lettner, T., Errando-Herranz, C., Jöns, K. D., Baghban, M. A., Gallo, K., Zichi, J., &#38; Zwiller, V. (2020). <i>NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials</i> (No. 171101; Vol. 116)."},"volume":116,"user_id":"71124","series_title":"Appl. Phys. Lett","_id":"41897","language":[{"iso":"ger"}],"article_number":"171101","intvolume":"       116","date_updated":"2023-02-13T08:48:00Z","publication_status":"published","author":[{"first_name":"S","last_name":"Steinhauer","full_name":"Steinhauer, S"},{"last_name":" Yang, ","first_name":"L","full_name":" Yang, , L"},{"first_name":"S","last_name":"Gyger","full_name":"Gyger, S"},{"last_name":" Lettner","first_name":"T","full_name":" Lettner, T"},{"full_name":"Errando-Herranz, C","first_name":"C","last_name":"Errando-Herranz"},{"last_name":"Jöns","first_name":"Klaus D","full_name":"Jöns, Klaus D"},{"full_name":"Baghban, M.A","first_name":"M.A","last_name":"Baghban"},{"last_name":"Gallo","first_name":"K","full_name":"Gallo, K"},{"full_name":"Zichi, J","last_name":"Zichi","first_name":"J"},{"first_name":"V","last_name":"Zwiller","full_name":"Zwiller, V"}],"year":"2020","title":"NbTiN thin films for superconducting photon detectors on photonic and two-dimensional materials","status":"public"},{"user_id":"71124","volume":7,"page":"29-35","series_title":"ACS Photonics ","_id":"41898","language":[{"iso":"ger"}],"publication_status":"published","date_updated":"2023-02-13T08:50:09Z","intvolume":"         7","status":"public","year":"2020","title":"A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1","author":[{"full_name":"Lettner, T","last_name":"Lettner","first_name":"T"},{"full_name":" Zeuner, K.D","last_name":" Zeuner","first_name":"K.D"},{"last_name":"Schöll","first_name":"E","full_name":"Schöll, E"},{"first_name":"H","last_name":"Huang","full_name":"Huang, H"},{"first_name":"S","last_name":"Scharmer","full_name":"Scharmer, S"},{"full_name":"Covre da Silva, S.F","last_name":"Covre da Silva","first_name":"S.F"},{"full_name":"Gyger, S","last_name":"Gyger","first_name":"S"},{"full_name":" Schweickert, L.K","first_name":"L.K","last_name":" Schweickert"},{"full_name":"Rastelli, A","last_name":"Rastelli","first_name":"A"},{"full_name":"Jöns, Klaus D.","last_name":"Jöns","first_name":"Klaus D.","id":"85353"},{"full_name":"Zwiller, V","last_name":"Zwiller","first_name":"V"}],"type":"conference","department":[{"_id":"623"}],"date_created":"2023-02-08T04:31:51Z","issue":"1","citation":{"bibtex":"@article{Lettner_ Zeuner_Schöll_Huang_Scharmer_Covre da Silva_Gyger_ Schweickert_Rastelli_Jöns_et al._2020, series={ACS Photonics }, title={A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1}, volume={7}, number={1}, author={Lettner, T and  Zeuner, K.D and Schöll, E and Huang, H and Scharmer, S and Covre da Silva, S.F and Gyger, S and  Schweickert, L.K and Rastelli, A and Jöns, Klaus D. and et al.}, year={2020}, pages={29–35}, collection={ACS Photonics } }","ama":"Lettner T,  Zeuner KD, Schöll E, et al. A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1. 2020;7(1):29-35.","mla":"Lettner, T., et al. <i>A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1</i>. no. 1, 2020, pp. 29–35.","short":"T. Lettner, K.D.  Zeuner, E. Schöll, H. Huang, S. Scharmer, S.F. Covre da Silva, S. Gyger, L.K.  Schweickert, A. Rastelli, K.D. Jöns, V. Zwiller, 7 (2020) 29–35.","chicago":"Lettner, T, K.D  Zeuner, E Schöll, H Huang, S Scharmer, S.F Covre da Silva, S Gyger, et al. “A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1.” ACS Photonics , 2020.","ieee":"T. Lettner <i>et al.</i>, “A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1,” vol. 7, no. 1. pp. 29–35, 2020.","apa":"Lettner, T.,  Zeuner, K. D., Schöll, E., Huang, H., Scharmer, S., Covre da Silva, S. F., Gyger, S.,  Schweickert, L. K., Rastelli, A., Jöns, K. D., &#38; Zwiller, V. (2020). <i>A GaAs quantum dot in a parabolic microcavity tuned to 87Rb D1</i> (Vol. 7, Issue 1, pp. 29–35)."}},{"status":"public","user_id":"71541","volume":158,"page":"6:1-6:25","_id":"8426","publisher":"Leibniz International Proceedings in Informatics (LIPIcs)","citation":{"ama":"Broadbent A, Gharibian S, Zhou H-S. Towards Quantum One-Time Memories from Stateless Hardware. In: <i>Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)</i>. Vol 158. Leibniz International Proceedings in Informatics (LIPIcs); 2020:6:1-6:25.","bibtex":"@inproceedings{Broadbent_Gharibian_Zhou_2020, title={Towards Quantum One-Time Memories from Stateless Hardware}, volume={158}, booktitle={Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)}, publisher={Leibniz International Proceedings in Informatics (LIPIcs)}, author={Broadbent, Anne and Gharibian, Sevag and Zhou, Hong-Sheng}, year={2020}, pages={6:1-6:25} }","mla":"Broadbent, Anne, et al. “Towards Quantum One-Time Memories from Stateless Hardware.” <i>Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)</i>, vol. 158, Leibniz International Proceedings in Informatics (LIPIcs), 2020, p. 6:1-6:25.","short":"A. Broadbent, S. Gharibian, H.-S. Zhou, in: Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC), Leibniz International Proceedings in Informatics (LIPIcs), 2020, p. 6:1-6:25.","chicago":"Broadbent, Anne, Sevag Gharibian, and Hong-Sheng Zhou. “Towards Quantum One-Time Memories from Stateless Hardware.” In <i>Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)</i>, 158:6:1-6:25. Leibniz International Proceedings in Informatics (LIPIcs), 2020.","apa":"Broadbent, A., Gharibian, S., &#38; Zhou, H.-S. (2020). Towards Quantum One-Time Memories from Stateless Hardware. <i>Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)</i>, <i>158</i>, 6:1-6:25.","ieee":"A. Broadbent, S. Gharibian, and H.-S. Zhou, “Towards Quantum One-Time Memories from Stateless Hardware,” in <i>Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)</i>, 2020, vol. 158, p. 6:1-6:25."},"external_id":{"arxiv":["1810.05226"]},"publication_status":"published","date_updated":"2023-02-28T10:59:55Z","intvolume":"       158","title":"Towards Quantum One-Time Memories from Stateless Hardware","year":"2020","author":[{"full_name":"Broadbent, Anne","last_name":"Broadbent","first_name":"Anne"},{"id":"71541","full_name":"Gharibian, Sevag","orcid":"0000-0002-9992-3379","last_name":"Gharibian","first_name":"Sevag"},{"last_name":"Zhou","first_name":"Hong-Sheng","full_name":"Zhou, Hong-Sheng"}],"main_file_link":[{"url":"https://arxiv.org/abs/1810.05226"}],"language":[{"iso":"eng"}],"abstract":[{"text":"A central tenet of theoretical cryptography is the study of the minimal assumptions required to implement a given cryptographic primitive. One such primitive is the one-time memory (OTM), introduced by Goldwasser, Kalai, and Rothblum [CRYPTO 2008], which is a classical functionality modeled after a non-interactive 1-out-of-2 oblivious transfer, and which is complete for one-time classical and quantum programs. It is known that secure OTMs do not exist in the standard model in both the classical and quantum settings. \r\n\r\nHere, we propose a scheme for using quantum information, together with the assumption of stateless (i.e., reusable) hardware tokens, to build statistically secure OTMs. Via the semidefinite programming-based quantum games framework of Gutoski and Watrous [STOC 2007], we prove security for a malicious receiver, against a linear number of adaptive queries to the token, in the quantum universal composability framework. We prove stand-alone security against a malicious sender, but leave open the question of composable security against a malicious sender, as well as security against a malicious receiver making a polynomial number of adaptive queries. Compared to alternative schemes derived from the literature on quantum money, our scheme is technologically simple since it is of the \"prepare-and measure\" type. We also show our scheme is \"tight\" according to two scenarios.","lang":"eng"}],"publication":"Proceedings of the 15th Conference on the Theory of Quantum Computation, Communication and Cryptography (TQC)","type":"conference","department":[{"_id":"623"},{"_id":"7"}],"date_created":"2019-03-06T14:37:09Z"},{"title":"On efficiently solvable cases of Quantum k-SAT","year":"2020","status":"public","author":[{"id":"71541","orcid":"0000-0002-9992-3379","last_name":"Gharibian","first_name":"Sevag","full_name":"Gharibian, Sevag"},{"full_name":"Aldi, Marco","first_name":"Marco","last_name":"Aldi"},{"first_name":"Niel","last_name":"de Beaudrap","full_name":"de Beaudrap, Niel"},{"full_name":"Saeedi, Seyran","first_name":"Seyran","last_name":"Saeedi"}],"publication_status":"published","date_updated":"2023-02-28T11:05:17Z","main_file_link":[{"url":"https://doi.org/10.1007/s00220-020-03843-9","open_access":"1"}],"_id":"16927","language":[{"iso":"eng"}],"user_id":"71541","publication":"Communications in Mathematical Physics","citation":{"ieee":"S. Gharibian, M. Aldi, N. de Beaudrap, and S. Saeedi, “On efficiently solvable cases of Quantum k-SAT,” <i>Communications in Mathematical Physics</i>, 2020.","apa":"Gharibian, S., Aldi, M., de Beaudrap, N., &#38; Saeedi, S. (2020). On efficiently solvable cases of Quantum k-SAT. <i>Communications in Mathematical Physics</i>.","chicago":"Gharibian, Sevag, Marco Aldi, Niel de Beaudrap, and Seyran Saeedi. “On Efficiently Solvable Cases of Quantum K-SAT.” <i>Communications in Mathematical Physics</i>, 2020.","short":"S. Gharibian, M. Aldi, N. de Beaudrap, S. Saeedi, Communications in Mathematical Physics (2020).","mla":"Gharibian, Sevag, et al. “On Efficiently Solvable Cases of Quantum K-SAT.” <i>Communications in Mathematical Physics</i>, 2020.","bibtex":"@article{Gharibian_Aldi_de Beaudrap_Saeedi_2020, title={On efficiently solvable cases of Quantum k-SAT}, journal={Communications in Mathematical Physics}, author={Gharibian, Sevag and Aldi, Marco and de Beaudrap, Niel and Saeedi, Seyran}, year={2020} }","ama":"Gharibian S, Aldi M, de Beaudrap N, Saeedi S. On efficiently solvable cases of Quantum k-SAT. <i>Communications in Mathematical Physics</i>. Published online 2020."},"external_id":{"arxiv":["1712.09617"]},"date_created":"2020-04-30T07:12:00Z","type":"journal_article","department":[{"_id":"623"},{"_id":"7"}],"oa":"1"},{"date_created":"2021-10-15T16:09:30Z","department":[{"_id":"15"},{"_id":"170"},{"_id":"706"},{"_id":"288"},{"_id":"230"},{"_id":"623"},{"_id":"35"}],"type":"journal_article","citation":{"ama":"Nitsche T, De S, Barkhofen S, et al. Local Versus Global Two-Photon Interference in Quantum Networks. <i>Physical Review Letters</i>. Published online 2020. doi:<a href=\"https://doi.org/10.1103/physrevlett.125.213604\">10.1103/physrevlett.125.213604</a>","bibtex":"@article{Nitsche_De_Barkhofen_Meyer-Scott_Tiedau_Sperling_Gábris_Jex_Silberhorn_2020, title={Local Versus Global Two-Photon Interference in Quantum Networks}, DOI={<a href=\"https://doi.org/10.1103/physrevlett.125.213604\">10.1103/physrevlett.125.213604</a>}, journal={Physical Review Letters}, author={Nitsche, Thomas and De, Syamsundar and Barkhofen, Sonja and Meyer-Scott, Evan and Tiedau, Johannes and Sperling, Jan and Gábris, Aurél and Jex, Igor and Silberhorn, Christine}, year={2020} }","mla":"Nitsche, Thomas, et al. “Local Versus Global Two-Photon Interference in Quantum Networks.” <i>Physical Review Letters</i>, 2020, doi:<a href=\"https://doi.org/10.1103/physrevlett.125.213604\">10.1103/physrevlett.125.213604</a>.","chicago":"Nitsche, Thomas, Syamsundar De, Sonja Barkhofen, Evan Meyer-Scott, Johannes Tiedau, Jan Sperling, Aurél Gábris, Igor Jex, and Christine Silberhorn. “Local Versus Global Two-Photon Interference in Quantum Networks.” <i>Physical Review Letters</i>, 2020. <a href=\"https://doi.org/10.1103/physrevlett.125.213604\">https://doi.org/10.1103/physrevlett.125.213604</a>.","short":"T. Nitsche, S. De, S. Barkhofen, E. Meyer-Scott, J. Tiedau, J. Sperling, A. Gábris, I. Jex, C. Silberhorn, Physical Review Letters (2020).","apa":"Nitsche, T., De, S., Barkhofen, S., Meyer-Scott, E., Tiedau, J., Sperling, J., Gábris, A., Jex, I., &#38; Silberhorn, C. (2020). Local Versus Global Two-Photon Interference in Quantum Networks. <i>Physical Review Letters</i>. <a href=\"https://doi.org/10.1103/physrevlett.125.213604\">https://doi.org/10.1103/physrevlett.125.213604</a>","ieee":"T. Nitsche <i>et al.</i>, “Local Versus Global Two-Photon Interference in Quantum Networks,” <i>Physical Review Letters</i>, 2020, doi: <a href=\"https://doi.org/10.1103/physrevlett.125.213604\">10.1103/physrevlett.125.213604</a>."},"publication":"Physical Review Letters","language":[{"iso":"eng"}],"_id":"26289","doi":"10.1103/physrevlett.125.213604","user_id":"16199","author":[{"last_name":"Nitsche","first_name":"Thomas","full_name":"Nitsche, Thomas"},{"full_name":"De, Syamsundar","first_name":"Syamsundar","last_name":"De"},{"id":"48188","full_name":"Barkhofen, Sonja","last_name":"Barkhofen","first_name":"Sonja"},{"last_name":"Meyer-Scott","first_name":"Evan","full_name":"Meyer-Scott, Evan"},{"first_name":"Johannes","last_name":"Tiedau","full_name":"Tiedau, Johannes"},{"first_name":"Jan","orcid":"0000-0002-5844-3205","last_name":"Sperling","full_name":"Sperling, Jan","id":"75127"},{"last_name":"Gábris","first_name":"Aurél","full_name":"Gábris, Aurél"},{"full_name":"Jex, Igor","last_name":"Jex","first_name":"Igor"},{"id":"26263","full_name":"Silberhorn, Christine","first_name":"Christine","last_name":"Silberhorn"}],"publication_identifier":{"issn":["0031-9007","1079-7114"]},"year":"2020","status":"public","title":"Local Versus Global Two-Photon Interference in Quantum Networks","date_updated":"2023-04-20T15:06:42Z","publication_status":"published"},{"doi":"10.1038/s42005-020-00491-2","article_number":"228","language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2023-04-21T11:22:13Z","intvolume":"         3","year":"2020","title":"Accurate photon echo timing by optical freezing of exciton dephasing and rephasing in quantum dots","author":[{"full_name":"Kosarev, Alexander N.","first_name":"Alexander N.","last_name":"Kosarev"},{"id":"55958","full_name":"Rose, Hendrik","orcid":"0000-0002-3079-5428","last_name":"Rose","first_name":"Hendrik"},{"last_name":"Poltavtsev","first_name":"Sergey V.","full_name":"Poltavtsev, Sergey V."},{"full_name":"Reichelt, Matthias","first_name":"Matthias","last_name":"Reichelt","id":"138"},{"full_name":"Schneider, Christian","last_name":"Schneider","first_name":"Christian"},{"last_name":"Kamp","first_name":"Martin","full_name":"Kamp, Martin"},{"first_name":"Sven","last_name":"Höfling","full_name":"Höfling, Sven"},{"full_name":"Bayer, Manfred","first_name":"Manfred","last_name":"Bayer"},{"full_name":"Meier, Torsten","last_name":"Meier","first_name":"Torsten","orcid":"0000-0001-8864-2072","id":"344"},{"full_name":"Akimov, Ilya A.","last_name":"Akimov","first_name":"Ilya A."}],"publication_identifier":{"issn":["2399-3650"]},"type":"journal_article","department":[{"_id":"15"},{"_id":"170"},{"_id":"293"},{"_id":"623"},{"_id":"230"},{"_id":"35"}],"date_created":"2020-12-16T14:30:57Z","abstract":[{"text":"<jats:title>Abstract</jats:title><jats:p>Semiconductor quantum dots are excellent candidates for ultrafast coherent manipulation of qubits by laser pulses on picosecond timescales or even faster. In inhomogeneous ensembles a macroscopic optical polarization decays rapidly due to dephasing, which, however, is reversible in photon echoes carrying complete information about the coherent ensemble dynamics. Control of the echo emission time is mandatory for applications. Here, we propose a concept to reach this goal. In a two-pulse photon echo sequence, we apply an additional resonant control pulse with multiple of 2<jats:italic>π</jats:italic> area. Depending on its arrival time, the control slows down dephasing or rephasing of the exciton ensemble during its action. We demonstrate for self-assembled (In,Ga)As quantum dots that the photon echo emission time can be retarded or advanced by up to 5 ps relative to its nominal appearance time without control. This versatile protocol may be used to obtain significantly longer temporal shifts for suitably tailored control pulses.</jats:p>","lang":"eng"}],"publication":"Communications Physics","issue":"1","user_id":"16199","volume":3,"_id":"20773","status":"public","project":[{"name":"TRR 142","_id":"53"},{"name":"TRR 142 - Project Area A","_id":"54"},{"name":"TRR 142 - Subproject A2","_id":"59"}],"citation":{"apa":"Kosarev, A. N., Rose, H., Poltavtsev, S. V., Reichelt, M., Schneider, C., Kamp, M., Höfling, S., Bayer, M., Meier, T., &#38; Akimov, I. A. (2020). Accurate photon echo timing by optical freezing of exciton dephasing and rephasing in quantum dots. <i>Communications Physics</i>, <i>3</i>(1), Article 228. <a href=\"https://doi.org/10.1038/s42005-020-00491-2\">https://doi.org/10.1038/s42005-020-00491-2</a>","ieee":"A. N. Kosarev <i>et al.</i>, “Accurate photon echo timing by optical freezing of exciton dephasing and rephasing in quantum dots,” <i>Communications Physics</i>, vol. 3, no. 1, Art. no. 228, 2020, doi: <a href=\"https://doi.org/10.1038/s42005-020-00491-2\">10.1038/s42005-020-00491-2</a>.","short":"A.N. Kosarev, H. Rose, S.V. Poltavtsev, M. Reichelt, C. Schneider, M. Kamp, S. Höfling, M. Bayer, T. Meier, I.A. Akimov, Communications Physics 3 (2020).","chicago":"Kosarev, Alexander N., Hendrik Rose, Sergey V. Poltavtsev, Matthias Reichelt, Christian Schneider, Martin Kamp, Sven Höfling, Manfred Bayer, Torsten Meier, and Ilya A. Akimov. “Accurate Photon Echo Timing by Optical Freezing of Exciton Dephasing and Rephasing in Quantum Dots.” <i>Communications Physics</i> 3, no. 1 (2020). <a href=\"https://doi.org/10.1038/s42005-020-00491-2\">https://doi.org/10.1038/s42005-020-00491-2</a>.","mla":"Kosarev, Alexander N., et al. “Accurate Photon Echo Timing by Optical Freezing of Exciton Dephasing and Rephasing in Quantum Dots.” <i>Communications Physics</i>, vol. 3, no. 1, 228, 2020, doi:<a href=\"https://doi.org/10.1038/s42005-020-00491-2\">10.1038/s42005-020-00491-2</a>.","ama":"Kosarev AN, Rose H, Poltavtsev SV, et al. Accurate photon echo timing by optical freezing of exciton dephasing and rephasing in quantum dots. <i>Communications Physics</i>. 2020;3(1). doi:<a href=\"https://doi.org/10.1038/s42005-020-00491-2\">10.1038/s42005-020-00491-2</a>","bibtex":"@article{Kosarev_Rose_Poltavtsev_Reichelt_Schneider_Kamp_Höfling_Bayer_Meier_Akimov_2020, title={Accurate photon echo timing by optical freezing of exciton dephasing and rephasing in quantum dots}, volume={3}, DOI={<a href=\"https://doi.org/10.1038/s42005-020-00491-2\">10.1038/s42005-020-00491-2</a>}, number={1228}, journal={Communications Physics}, author={Kosarev, Alexander N. and Rose, Hendrik and Poltavtsev, Sergey V. and Reichelt, Matthias and Schneider, Christian and Kamp, Martin and Höfling, Sven and Bayer, Manfred and Meier, Torsten and Akimov, Ilya A.}, year={2020} }"}},{"status":"public","publisher":"Springer Science and Business Media LLC","_id":"63046","page":"1843-1850","volume":5,"user_id":"112030","citation":{"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} }","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>","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.","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>.","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>"},"publication_identifier":{"issn":["2059-8521"]},"author":[{"full_name":"Güsken, Nicholas Alexander","first_name":"Nicholas Alexander","orcid":"0000-0002-4816-0666","last_name":"Güsken","id":"112030"},{"full_name":"Lauri, Alberto","last_name":"Lauri","first_name":"Alberto"},{"last_name":"Li","first_name":"Yi","full_name":"Li, Yi"},{"full_name":"Jacassi, Andrea","first_name":"Andrea","last_name":"Jacassi"},{"full_name":"Matsui, Takayuki","first_name":"Takayuki","last_name":"Matsui"},{"first_name":"Brock","last_name":"Doiron","full_name":"Doiron, Brock"},{"full_name":"Bower, Ryan","first_name":"Ryan","last_name":"Bower"},{"full_name":"Regoutz, Anna","first_name":"Anna","last_name":"Regoutz"},{"full_name":"Mihai, Andrei","last_name":"Mihai","first_name":"Andrei"},{"full_name":"Petrov, Peter K.","last_name":"Petrov","first_name":"Peter K."},{"last_name":"Oulton","first_name":"Rupert F.","full_name":"Oulton, Rupert F."},{"first_name":"Lesley F.","last_name":"Cohen","full_name":"Cohen, Lesley F."},{"first_name":"Stefan A.","last_name":"Maier","full_name":"Maier, Stefan A."}],"title":"IR hot carrier based photodetection in titanium nitride oxide thin film-Si junctions","year":"2020","intvolume":"         5","publication_status":"published","date_updated":"2025-12-15T11:21:37Z","language":[{"iso":"eng"}],"doi":"10.1557/adv.2020.129","publication":"MRS Advances","issue":"35-36","date_created":"2025-12-11T20:38:45Z","department":[{"_id":"623"},{"_id":"15"},{"_id":"230"}],"type":"journal_article"},{"doi":"10.1364/oe.383111","language":[{"iso":"eng"}],"article_number":"5528","intvolume":"        28","publication_status":"published","date_updated":"2025-12-18T17:10:24Z","publication_identifier":{"issn":["1094-4087"]},"author":[{"first_name":"Johannes","last_name":"Tiedau","full_name":"Tiedau, Johannes"},{"full_name":"Schapeler, Timon","first_name":"Timon","last_name":"Schapeler","orcid":"0000-0001-7652-1716","id":"55629"},{"full_name":"Anant, Vikas","last_name":"Anant","first_name":"Vikas"},{"last_name":"Fedder","first_name":"Helmut","full_name":"Fedder, Helmut"},{"full_name":"Silberhorn, Christine","first_name":"Christine","last_name":"Silberhorn","id":"26263"},{"full_name":"Bartley, Tim","first_name":"Tim","last_name":"Bartley","id":"49683"}],"title":"Single-channel electronic readout of a multipixel superconducting nanowire single photon detector","year":"2020","department":[{"_id":"288"},{"_id":"15"},{"_id":"623"},{"_id":"230"}],"keyword":["Atomic and Molecular Physics","and Optics"],"type":"journal_article","date_created":"2023-01-22T17:13:35Z","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>"}],"issue":"4","publication":"Optics Express","volume":28,"user_id":"55629","publisher":"Optica Publishing Group","_id":"37933","status":"public","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"}],"citation":{"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>.","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>","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>.","short":"J. Tiedau, T. Schapeler, V. Anant, H. Fedder, C. Silberhorn, T. Bartley, Optics Express 28 (2020).","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>.","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} }","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>"}},{"status":"public","_id":"63038","publisher":"American Chemical Society (ACS)","page":"1642-1648","volume":7,"user_id":"112030","citation":{"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} }","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>","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>.","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>.","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.","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>.","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>"},"publication_identifier":{"issn":["2330-4022","2330-4022"]},"author":[{"full_name":"Sistani, Masiar","first_name":"Masiar","last_name":"Sistani"},{"last_name":"Bartmann","first_name":"Maximilian G.","full_name":"Bartmann, Maximilian G."},{"full_name":"Güsken, Nicholas Alexander","orcid":"0000-0002-4816-0666","first_name":"Nicholas Alexander","last_name":"Güsken","id":"112030"},{"last_name":"Oulton","first_name":"Rupert F.","full_name":"Oulton, Rupert F."},{"full_name":"Keshmiri, Hamid","first_name":"Hamid","last_name":"Keshmiri"},{"full_name":"Luong, Minh Anh","last_name":"Luong","first_name":"Minh Anh"},{"full_name":"Momtaz, Zahra Sadre","first_name":"Zahra Sadre","last_name":"Momtaz"},{"full_name":"Den Hertog, Martien I.","last_name":"Den Hertog","first_name":"Martien I."},{"full_name":"Lugstein, Alois","first_name":"Alois","last_name":"Lugstein"}],"title":"Plasmon-Driven Hot Electron Transfer at Atomically Sharp Metal–Semiconductor Nanojunctions","year":"2020","intvolume":"         7","date_updated":"2026-01-08T16:08:03Z","publication_status":"published","language":[{"iso":"eng"}],"doi":"10.1021/acsphotonics.0c00557","issue":"7","publication":"ACS Photonics","date_created":"2025-12-11T20:31:21Z","department":[{"_id":"623"},{"_id":"15"},{"_id":"230"}],"type":"journal_article"},{"user_id":"112030","volume":124,"page":"13872-13877","_id":"63042","publisher":"American Chemical Society (ACS)","status":"public","citation":{"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>.","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>","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} }","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>","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>.","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.","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>."},"doi":"10.1021/acs.jpcc.0c02602","language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2026-01-08T16:08:10Z","intvolume":"       124","title":"Stimulated Raman Scattering in Ge Nanowires","year":"2020","author":[{"full_name":"Sistani, Masiar","first_name":"Masiar","last_name":"Sistani"},{"first_name":"Maximilian G.","last_name":"Bartmann","full_name":"Bartmann, Maximilian G."},{"last_name":"Güsken","orcid":"0000-0002-4816-0666","first_name":"Nicholas Alexander","full_name":"Güsken, Nicholas Alexander","id":"112030"},{"full_name":"Oulton, Rupert F.","last_name":"Oulton","first_name":"Rupert F."},{"full_name":"Keshmiri, Hamid","first_name":"Hamid","last_name":"Keshmiri"},{"last_name":"Luong","first_name":"Minh Anh","full_name":"Luong, Minh Anh"},{"last_name":"Robin","first_name":"Eric","full_name":"Robin, Eric"},{"full_name":"den Hertog, Martien I.","last_name":"den Hertog","first_name":"Martien I."},{"first_name":"Alois","last_name":"Lugstein","full_name":"Lugstein, Alois"}],"publication_identifier":{"issn":["1932-7447","1932-7455"]},"type":"journal_article","department":[{"_id":"623"},{"_id":"15"},{"_id":"230"}],"date_created":"2025-12-11T20:36:32Z","issue":"25","publication":"The Journal of Physical Chemistry C"},{"doi":"10.4171/jems/867","language":[{"iso":"eng"}],"intvolume":"        21","publication_status":"published","date_updated":"2022-05-19T10:12:59Z","publication_identifier":{"issn":["1435-9855"]},"author":[{"last_name":"Dyatlov","first_name":"Semyon","full_name":"Dyatlov, Semyon"},{"last_name":"Borthwick","first_name":"David","full_name":"Borthwick, David"},{"id":"49178","last_name":"Weich","orcid":"0000-0002-9648-6919","first_name":"Tobias","full_name":"Weich, Tobias"}],"title":"Improved fractal Weyl bounds for hyperbolic manifolds. With an appendix by David Borthwick, Semyon Dyatlov and Tobias Weich","year":"2019","department":[{"_id":"10"},{"_id":"623"},{"_id":"548"}],"type":"journal_article","keyword":["Applied Mathematics","General Mathematics"],"date_created":"2022-05-17T12:06:41Z","publication":"Journal of the European Mathematical Society","issue":"6","volume":21,"user_id":"49178","publisher":"European Mathematical Society - EMS - Publishing House GmbH","_id":"31265","page":"1595-1639","status":"public","external_id":{"arxiv":["1512.00836"]},"citation":{"short":"S. Dyatlov, D. Borthwick, T. Weich, Journal of the European Mathematical Society 21 (2019) 1595–1639.","chicago":"Dyatlov, Semyon, David Borthwick, and Tobias Weich. “Improved Fractal Weyl Bounds for Hyperbolic Manifolds. With an Appendix by David Borthwick, Semyon Dyatlov and Tobias Weich.” <i>Journal of the European Mathematical Society</i> 21, no. 6 (2019): 1595–1639. <a href=\"https://doi.org/10.4171/jems/867\">https://doi.org/10.4171/jems/867</a>.","apa":"Dyatlov, S., Borthwick, D., &#38; Weich, T. (2019). Improved fractal Weyl bounds for hyperbolic manifolds. With an appendix by David Borthwick, Semyon Dyatlov and Tobias Weich. <i>Journal of the European Mathematical Society</i>, <i>21</i>(6), 1595–1639. <a href=\"https://doi.org/10.4171/jems/867\">https://doi.org/10.4171/jems/867</a>","ieee":"S. Dyatlov, D. Borthwick, and T. Weich, “Improved fractal Weyl bounds for hyperbolic manifolds. With an appendix by David Borthwick, Semyon Dyatlov and Tobias Weich,” <i>Journal of the European Mathematical Society</i>, vol. 21, no. 6, pp. 1595–1639, 2019, doi: <a href=\"https://doi.org/10.4171/jems/867\">10.4171/jems/867</a>.","ama":"Dyatlov S, Borthwick D, Weich T. Improved fractal Weyl bounds for hyperbolic manifolds. With an appendix by David Borthwick, Semyon Dyatlov and Tobias Weich. <i>Journal of the European Mathematical Society</i>. 2019;21(6):1595-1639. doi:<a href=\"https://doi.org/10.4171/jems/867\">10.4171/jems/867</a>","bibtex":"@article{Dyatlov_Borthwick_Weich_2019, title={Improved fractal Weyl bounds for hyperbolic manifolds. With an appendix by David Borthwick, Semyon Dyatlov and Tobias Weich}, volume={21}, DOI={<a href=\"https://doi.org/10.4171/jems/867\">10.4171/jems/867</a>}, number={6}, journal={Journal of the European Mathematical Society}, publisher={European Mathematical Society - EMS - Publishing House GmbH}, author={Dyatlov, Semyon and Borthwick, David and Weich, Tobias}, year={2019}, pages={1595–1639} }","mla":"Dyatlov, Semyon, et al. “Improved Fractal Weyl Bounds for Hyperbolic Manifolds. 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Nonlinear integrated quantum electro-optic circuits. <i>Science Advances</i>. 2019;5(1). doi:<a href=\"https://doi.org/10.1126/sciadv.aat1451\">10.1126/sciadv.aat1451</a>"},"project":[{"_id":"53","name":"TRR 142: TRR 142"},{"name":"TRR 142 - C: TRR 142 - Project Area C","_id":"56"},{"name":"TRR 142 - C2: TRR 142 - Subproject C2","_id":"72"},{"_id":"52","name":"PC2: Computing Resources Provided by the Paderborn Center for Parallel Computing"}],"status":"public","_id":"37288","publisher":"American Association for the Advancement of Science (AAAS)","volume":5,"user_id":"16199","issue":"1","publication":"Science Advances","abstract":[{"text":"<jats:p>An integrated chip with quantum state generation, active polarization manipulation, and precise time control is demonstrated.</jats:p>","lang":"eng"}],"date_created":"2023-01-18T10:35:19Z","department":[{"_id":"15"},{"_id":"569"},{"_id":"170"},{"_id":"293"},{"_id":"230"},{"_id":"623"},{"_id":"429"},{"_id":"35"}],"keyword":["Multidisciplinary"],"type":"journal_article","publication_identifier":{"issn":["2375-2548"]},"author":[{"id":"36389","full_name":"Luo, Kai-Hong","last_name":"Luo","first_name":"Kai-Hong","orcid":"0000-0003-1008-4976"},{"id":"38161","full_name":"Brauner, Sebastian","first_name":"Sebastian","last_name":"Brauner"},{"id":"13244","full_name":"Eigner, Christof","orcid":"https://orcid.org/0000-0002-5693-3083","last_name":"Eigner","first_name":"Christof"},{"first_name":"Polina","last_name":"Sharapova","full_name":"Sharapova, Polina","id":"60286"},{"full_name":"Ricken, Raimund","first_name":"Raimund","last_name":"Ricken"},{"id":"344","full_name":"Meier, Torsten","last_name":"Meier","first_name":"Torsten","orcid":"0000-0001-8864-2072"},{"full_name":"Herrmann, Harald","first_name":"Harald","last_name":"Herrmann","id":"216"},{"last_name":"Silberhorn","first_name":"Christine","full_name":"Silberhorn, Christine","id":"26263"}],"title":"Nonlinear integrated quantum electro-optic circuits","year":"2019","intvolume":"         5","publication_status":"published","date_updated":"2023-04-21T11:25:39Z","language":[{"iso":"eng"}],"doi":"10.1126/sciadv.aat1451"}]
