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On the Support of Pollicott–Ruelle Resonanant States for Anosov Flows. <i>Annales Henri Poincaré</i>, <i>18</i>(1), 37–52. <a href=\"https://doi.org/10.1007/s00023-016-0514-5\">https://doi.org/10.1007/s00023-016-0514-5</a>"},"language":[{"iso":"eng"}],"doi":"10.1007/s00023-016-0514-5","publication_identifier":{"issn":["1424-0637","1424-0661"]},"author":[{"full_name":"Weich, Tobias","first_name":"Tobias","last_name":"Weich","orcid":"0000-0002-9648-6919","id":"49178"}],"title":"On the Support of Pollicott–Ruelle Resonanant States for Anosov Flows","year":"2016","intvolume":"        18","date_updated":"2022-05-19T10:15:36Z","publication_status":"published","date_created":"2022-05-17T12:53:51Z","department":[{"_id":"10"},{"_id":"623"},{"_id":"548"}],"keyword":["Mathematical Physics","Nuclear and High Energy Physics","Statistical and Nonlinear Physics"],"type":"journal_article","issue":"1","publication":"Annales Henri Poincaré"},{"volume":16,"user_id":"71124","series_title":"Nano Lett. ","_id":"42022","language":[{"iso":"eng"}],"page":"1081-1085","intvolume":"        16","date_updated":"2023-02-13T08:45:22Z","author":[{"full_name":"Bavinck, M. Bouwes ","first_name":"M. Bouwes ","last_name":"Bavinck"},{"id":"85353","last_name":"Jöns","first_name":"Klaus D.","full_name":"Jöns, Klaus D."},{"first_name":"M","last_name":"Zielinski","full_name":"Zielinski, M"},{"full_name":"Patriarche, G","first_name":"G","last_name":"Patriarche"},{"full_name":" Harmand, J-C","last_name":" Harmand","first_name":"J-C"},{"full_name":" Akopian, N","last_name":" Akopian","first_name":"N"},{"full_name":"Zwiller, V","last_name":"Zwiller","first_name":"V"}],"year":"2016","title":"Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot","status":"public","department":[{"_id":"623"}],"type":"conference","date_created":"2023-02-13T07:35:28Z","citation":{"mla":"Bavinck, M. Bouwes, et al. <i>Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot</i>. no. 2, 2016, pp. 1081–85.","ama":"Bavinck MB, Jöns KD, Zielinski M, et al. Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot. 2016;16(2):1081-1085.","bibtex":"@article{Bavinck_Jöns_Zielinski_Patriarche_ Harmand_ Akopian_Zwiller_2016, series={Nano Lett. }, title={Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot}, volume={16}, number={2}, author={Bavinck, M. Bouwes  and Jöns, Klaus D. and Zielinski, M and Patriarche, G and  Harmand, J-C and  Akopian, N and Zwiller, V}, year={2016}, pages={1081–1085}, collection={Nano Lett. } }","apa":"Bavinck, M. B., Jöns, K. D., Zielinski, M., Patriarche, G.,  Harmand, J.-C.,  Akopian, N., &#38; Zwiller, V. (2016). <i>Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot</i> (Vol. 16, Issue 2, pp. 1081–1085).","ieee":"M. B. Bavinck <i>et al.</i>, “Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot,” vol. 16, no. 2. pp. 1081–1085, 2016.","short":"M.B. Bavinck, K.D. Jöns, M. Zielinski, G. Patriarche, J.-C.  Harmand, N.  Akopian, V. Zwiller, 16 (2016) 1081–1085.","chicago":"Bavinck, M. Bouwes , Klaus D. Jöns, M Zielinski, G Patriarche, J-C  Harmand, N  Akopian, and V Zwiller. “Photon Cascade from a Single Crystal Phase Nanowire Quantum Dot.” Nano Lett. , 2016."},"issue":"2"},{"page":"182103 ","_id":"41925","language":[{"iso":"ger"}],"series_title":"Appl. Phys. Lett. ","user_id":"71124","volume":108,"year":"2016","title":"Controlling the exciton energy of a nanowire quantum dot by strain fields","status":"public","author":[{"last_name":"Chen","first_name":"Y","full_name":"Chen, Y"},{"full_name":"Zadeh, I. Esmaeil","last_name":"Zadeh","first_name":"I. Esmaeil"},{"id":"85353","full_name":"Jöns, Klaus D.","first_name":"Klaus D.","last_name":"Jöns"},{"last_name":" Fognini","first_name":"A","full_name":" Fognini, A"},{"full_name":"Reimer, M.E","last_name":"Reimer","first_name":"M.E"},{"full_name":"Zhang, J","first_name":"J","last_name":"Zhang"},{"last_name":"Dalacu","first_name":"D","full_name":"Dalacu, D"},{"last_name":"Poole","first_name":"P.J","full_name":"Poole, P.J"},{"full_name":"Ding, F","first_name":"F","last_name":"Ding"},{"full_name":" Zwiller, V","first_name":"V","last_name":" Zwiller"},{"full_name":"Schmidt, O.G","last_name":"Schmidt","first_name":"O.G"}],"publication_status":"published","date_updated":"2023-02-13T08:47:11Z","intvolume":"       108","date_created":"2023-02-09T00:16:00Z","type":"conference","department":[{"_id":"623"}],"citation":{"mla":"Chen, Y., et al. <i>Controlling the exciton energy of a nanowire quantum dot by strain fields</i>. 2016, p. 182103.","ama":"Chen Y, Zadeh IE, Jöns KD, et al. Controlling the exciton energy of a nanowire quantum dot by strain fields. 2016;108:182103.","bibtex":"@article{Chen_Zadeh_Jöns_ Fognini_Reimer_Zhang_Dalacu_Poole_Ding_ Zwiller_et al._2016, series={Appl. Phys. Lett. }, title={Controlling the exciton energy of a nanowire quantum dot by strain fields}, volume={108}, author={Chen, Y and Zadeh, I. Esmaeil and Jöns, Klaus D. and  Fognini, A and Reimer, M.E and Zhang, J and Dalacu, D and Poole, P.J and Ding, F and  Zwiller, V and et al.}, year={2016}, pages={182103}, collection={Appl. Phys. Lett. } }","apa":"Chen, Y., Zadeh, I. E., Jöns, K. D.,  Fognini, A., Reimer, M. E., Zhang, J., Dalacu, D., Poole, P. J., Ding, F.,  Zwiller, V., &#38; Schmidt, O. G. (2016). <i>Controlling the exciton energy of a nanowire quantum dot by strain fields</i> (Vol. 108, p. 182103).","ieee":"Y. Chen <i>et al.</i>, “Controlling the exciton energy of a nanowire quantum dot by strain fields,” vol. 108. p. 182103, 2016.","chicago":"Chen, Y, I. Esmaeil Zadeh, Klaus D. Jöns, A  Fognini, M.E Reimer, J Zhang, D Dalacu, et al. “Controlling the exciton energy of a nanowire quantum dot by strain fields.” Appl. Phys. Lett. , 2016.","short":"Y. Chen, I.E. Zadeh, K.D. Jöns, A.  Fognini, M.E. Reimer, J. Zhang, D. Dalacu, P.J. Poole, F. Ding, V.  Zwiller, O.G. Schmidt, 108 (2016) 182103."}},{"department":[{"_id":"623"}],"type":"conference","date_created":"2023-02-13T07:30:38Z","citation":{"chicago":"Zadeh, I.Esmaeil, A.W Elshaari, Klaus D. Jöns, A Fognini, D  Dalacu, P.J Poole, M.E Reimer, and V Zwiller. “Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits.” Nano Lett., 2016.","short":"I.E. Zadeh, A.W. Elshaari, K.D. Jöns, A. Fognini, D.  Dalacu, P.J. Poole, M.E. Reimer, V. Zwiller, 16 (2016) 2289–2294.","apa":"Zadeh, I. E., Elshaari, A. W., Jöns, K. D., Fognini, A.,  Dalacu, D., Poole, P. J., Reimer, M. E., &#38; Zwiller, V. (2016). <i>Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits</i> (Vol. 16, Issue 4, pp. 2289–2294).","ieee":"I. E. Zadeh <i>et al.</i>, “Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits,” vol. 16, no. 4. pp. 2289–2294, 2016.","ama":"Zadeh IE, Elshaari AW, Jöns KD, et al. Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits. 2016;16(4):2289-2294.","bibtex":"@article{Zadeh_Elshaari_Jöns_Fognini_ Dalacu_Poole_Reimer_Zwiller_2016, series={Nano Lett.}, title={Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits}, volume={16}, number={4}, author={Zadeh, I.Esmaeil and Elshaari, A.W and Jöns, Klaus D. and Fognini, A and  Dalacu, D and Poole, P.J and Reimer, M.E and Zwiller, V}, year={2016}, pages={2289–2294}, collection={Nano Lett.} }","mla":"Zadeh, I. Esmaeil, et al. <i>Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits</i>. no. 4, 2016, pp. 2289–94."},"issue":"4","volume":16,"user_id":"71124","series_title":"Nano Lett.","_id":"42021","language":[{"iso":"ger"}],"page":" 2289-2294","intvolume":"        16","publication_status":"published","date_updated":"2023-02-13T08:46:48Z","author":[{"first_name":"I.Esmaeil","last_name":"Zadeh","full_name":"Zadeh, I.Esmaeil"},{"full_name":"Elshaari, A.W","first_name":"A.W","last_name":"Elshaari"},{"id":"85353","first_name":"Klaus D.","last_name":"Jöns","full_name":"Jöns, Klaus D."},{"first_name":"A","last_name":"Fognini","full_name":"Fognini, A"},{"last_name":" Dalacu","first_name":"D","full_name":" Dalacu, D"},{"last_name":"Poole","first_name":"P.J","full_name":"Poole, P.J"},{"first_name":"M.E","last_name":"Reimer","full_name":"Reimer, M.E"},{"full_name":"Zwiller, V","first_name":"V","last_name":"Zwiller"}],"status":"public","year":"2016","title":"Deterministic Integration of Single Photon Sources in Silicon Based Photonic Circuits"},{"department":[{"_id":"623"}],"type":"conference","date_created":"2023-02-09T00:00:40Z","citation":{"ama":"Elshaari AW, Zadeh IE, Jӧns KD, Zwiller V. Thermo-optic characterization of silicon nitride resonators for cryogenic photonic circuits. 2016;8:2701009.","bibtex":"@article{Elshaari_Zadeh_Jӧns_Zwiller_2016, series={IEEE Photonics }, title={Thermo-optic characterization of silicon nitride resonators for cryogenic photonic circuits}, volume={8}, author={Elshaari, A.W and Zadeh, I. Esmaeil  and Jӧns, Klaus D. and Zwiller, V}, year={2016}, pages={2701009}, collection={IEEE Photonics } }","mla":"Elshaari, A. W., et al. <i>Thermo-Optic Characterization of Silicon Nitride Resonators for Cryogenic Photonic Circuits</i>. 2016, p. 2701009.","chicago":"Elshaari, A.W, I. Esmaeil  Zadeh, Klaus D. Jӧns, and V Zwiller. “Thermo-Optic Characterization of Silicon Nitride Resonators for Cryogenic Photonic Circuits.” IEEE Photonics , 2016.","short":"A.W. Elshaari, I.E. Zadeh, K.D. Jӧns, V. Zwiller, 8 (2016) 2701009.","apa":"Elshaari, A. W., Zadeh, I. E., Jӧns, K. D., &#38; Zwiller, V. (2016). <i>Thermo-optic characterization of silicon nitride resonators for cryogenic photonic circuits</i> (Vol. 8, p. 2701009).","ieee":"A. W. Elshaari, I. E. Zadeh, K. D. Jӧns, and V. Zwiller, “Thermo-optic characterization of silicon nitride resonators for cryogenic photonic circuits,” vol. 8. p. 2701009, 2016."},"volume":8,"user_id":"71124","_id":"41924","series_title":"IEEE Photonics ","language":[{"iso":"eng"}],"page":"2701009 ","intvolume":"         8","date_updated":"2023-02-13T08:47:11Z","author":[{"last_name":"Elshaari","first_name":"A.W","full_name":"Elshaari, A.W"},{"full_name":"Zadeh, I. Esmaeil ","last_name":"Zadeh","first_name":"I. Esmaeil "},{"last_name":"Jӧns","first_name":"Klaus D.","full_name":"Jӧns, Klaus D."},{"last_name":"Zwiller","first_name":"V","full_name":"Zwiller, V"}],"title":"Thermo-optic characterization of silicon nitride resonators for cryogenic photonic circuits","year":"2016","status":"public"},{"title":"A Linear Time Algorithm for Quantum 2-SAT","year":"2016","author":[{"full_name":"de Beaudrap, Niel","last_name":"de Beaudrap","first_name":"Niel"},{"full_name":"Gharibian, Sevag","first_name":"Sevag","orcid":"0000-0002-9992-3379","last_name":"Gharibian","id":"71541"}],"publication_identifier":{"isbn":["978-3-95977-008-8"]},"publication_status":"published","date_updated":"2023-02-28T11:01:53Z","intvolume":"        50","main_file_link":[{"url":"http://drops.dagstuhl.de/opus/volltexte/2016/5836/","open_access":"1"}],"language":[{"iso":"eng"}],"series_title":"Leibniz International Proceedings in Informatics (LIPIcs)","doi":"10.4230/LIPIcs.CCC.2016.27","publication":"Proceedings of the 31st Conference on Computational Complexity (CCC 2016)","extern":"1","abstract":[{"text":"The Boolean constraint satisfaction problem 3-SAT is arguably the canonical NP-complete problem. In contrast, 2-SAT can not only be decided in polynomial time, but in fact in deterministic linear time. In 2006, Bravyi proposed a physically motivated generalization of k-SAT to the quantum setting, defining the problem \"quantum k-SAT\". He showed that quantum 2-SAT is also solvable in polynomial time on a classical computer, in particular in deterministic time O(n^4), assuming unit-cost arithmetic over a field extension of the rational numbers, where n is number of variables. In this paper, we present an algorithm for quantum 2-SAT which runs in linear time, i.e. deterministic time O(n+m) for n and m the number of variables and clauses, respectively. Our approach exploits the transfer matrix techniques of Laumann et al. [QIC, 2010] used in the study of phase transitions for random quantum 2-SAT, and bears similarities with both the linear time 2-SAT algorithms of Even, Itai, and Shamir (based on backtracking) [SICOMP, 1976] and Aspvall, Plass, and Tarjan (based on strongly connected components) [IPL, 1979].","lang":"eng"}],"date_created":"2019-03-01T11:19:54Z","keyword":["quantum 2-SAT","transfer matrix","strongly connected components","limited backtracking","local Hamiltonian"],"type":"conference","department":[{"_id":"623"},{"_id":"7"}],"status":"public","conference":{"location":"Tokyo, Japan","name":"31st Conference on Computational Complexity (CCC 2016)"},"page":"27:1-17:21","_id":"8159","publisher":"Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik","user_id":"71541","volume":50,"editor":[{"full_name":"Raz, Ran","first_name":"Ran","last_name":"Raz"}],"citation":{"ieee":"N. de Beaudrap and S. Gharibian, “A Linear Time Algorithm for Quantum 2-SAT,” in <i>Proceedings of the 31st Conference on Computational Complexity (CCC 2016)</i>, Tokyo, Japan, 2016, vol. 50, p. 27:1–17:21, doi: <a href=\"https://doi.org/10.4230/LIPIcs.CCC.2016.27\">10.4230/LIPIcs.CCC.2016.27</a>.","mla":"de Beaudrap, Niel, and Sevag Gharibian. “A Linear Time Algorithm for Quantum 2-SAT.” <i>Proceedings of the 31st Conference on Computational Complexity (CCC 2016)</i>, edited by Ran Raz, vol. 50, Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik, 2016, p. 27:1-17:21, doi:<a href=\"https://doi.org/10.4230/LIPIcs.CCC.2016.27\">10.4230/LIPIcs.CCC.2016.27</a>.","apa":"de Beaudrap, N., &#38; Gharibian, S. (2016). A Linear Time Algorithm for Quantum 2-SAT. In R. Raz (Ed.), <i>Proceedings of the 31st Conference on Computational Complexity (CCC 2016)</i> (Vol. 50, p. 27:1-17:21). Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik. <a href=\"https://doi.org/10.4230/LIPIcs.CCC.2016.27\">https://doi.org/10.4230/LIPIcs.CCC.2016.27</a>","bibtex":"@inproceedings{de Beaudrap_Gharibian_2016, place={Dagstuhl, Germany}, series={Leibniz International Proceedings in Informatics (LIPIcs)}, title={A Linear Time Algorithm for Quantum 2-SAT}, volume={50}, DOI={<a href=\"https://doi.org/10.4230/LIPIcs.CCC.2016.27\">10.4230/LIPIcs.CCC.2016.27</a>}, booktitle={Proceedings of the 31st Conference on Computational Complexity (CCC 2016)}, publisher={Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik}, author={de Beaudrap, Niel and Gharibian, Sevag}, editor={Raz, Ran}, year={2016}, pages={27:1–17:21}, collection={Leibniz International Proceedings in Informatics (LIPIcs)} }","chicago":"Beaudrap, Niel de, and Sevag Gharibian. “A Linear Time Algorithm for Quantum 2-SAT.” In <i>Proceedings of the 31st Conference on Computational Complexity (CCC 2016)</i>, edited by Ran Raz, 50:27:1-17:21. Leibniz International Proceedings in Informatics (LIPIcs). Dagstuhl, Germany: Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik, 2016. <a href=\"https://doi.org/10.4230/LIPIcs.CCC.2016.27\">https://doi.org/10.4230/LIPIcs.CCC.2016.27</a>.","ama":"de Beaudrap N, Gharibian S. A Linear Time Algorithm for Quantum 2-SAT. In: Raz R, ed. <i>Proceedings of the 31st Conference on Computational Complexity (CCC 2016)</i>. Vol 50. Leibniz International Proceedings in Informatics (LIPIcs). Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik; 2016:27:1-17:21. doi:<a href=\"https://doi.org/10.4230/LIPIcs.CCC.2016.27\">10.4230/LIPIcs.CCC.2016.27</a>","short":"N. de Beaudrap, S. Gharibian, in: R. Raz (Ed.), Proceedings of the 31st Conference on Computational Complexity (CCC 2016), Schloss Dagstuhl - Leibniz-Zentrum fuer Informatik, Dagstuhl, Germany, 2016, p. 27:1–17:21."},"external_id":{"arxiv":["1508.07338"]},"place":"Dagstuhl, Germany","oa":"1"},{"doi":"10.1017/etds.2015.34","language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2022-05-19T10:15:54Z","intvolume":"        37","title":"Asymptotic spectral gap and Weyl law for Ruelle resonances of open partially expanding maps","year":"2015","author":[{"first_name":"JEAN FRANCOIS","last_name":"ARNOLDI","full_name":"ARNOLDI, JEAN FRANCOIS"},{"last_name":"FAURE","first_name":"FRÉDÉRIC","full_name":"FAURE, FRÉDÉRIC"},{"orcid":"0000-0002-9648-6919","first_name":"Tobias","last_name":"Weich","full_name":"Weich, Tobias","id":"49178"}],"publication_identifier":{"issn":["0143-3857","1469-4417"]},"keyword":["Applied Mathematics","General Mathematics"],"type":"journal_article","department":[{"_id":"10"},{"_id":"623"},{"_id":"548"}],"date_created":"2022-05-17T12:55:26Z","abstract":[{"text":"<jats:p>We consider a simple model of an open partially expanding map. Its trapped set <jats:inline-formula><jats:alternatives><jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\" mime-subtype=\"gif\" xlink:type=\"simple\" xlink:href=\"S0143385715000346_inline1\" /><jats:tex-math>${\\mathcal{K}}$</jats:tex-math></jats:alternatives></jats:inline-formula> in phase space is a fractal set. We first show that there is a well-defined discrete spectrum of Ruelle resonances which describes the asymptotic of correlation functions for large time and which is parametrized by the Fourier component <jats:inline-formula><jats:alternatives><jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\" mime-subtype=\"gif\" xlink:type=\"simple\" xlink:href=\"S0143385715000346_inline2\" /><jats:tex-math>$\\unicode[STIX]{x1D708}$</jats:tex-math></jats:alternatives></jats:inline-formula> in the neutral direction of the dynamics. We introduce a specific hypothesis on the dynamics that we call ‘minimal captivity’. This hypothesis is stable under perturbations and means that the dynamics is univalued in a neighborhood of <jats:inline-formula><jats:alternatives><jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\" mime-subtype=\"gif\" xlink:type=\"simple\" xlink:href=\"S0143385715000346_inline3\" /><jats:tex-math>${\\mathcal{K}}$</jats:tex-math></jats:alternatives></jats:inline-formula>. Under this hypothesis we show the existence of an asymptotic spectral gap and a fractal Weyl law for the upper bound of density of Ruelle resonances in the semiclassical limit <jats:inline-formula><jats:alternatives><jats:inline-graphic xmlns:xlink=\"http://www.w3.org/1999/xlink\" mime-subtype=\"gif\" xlink:type=\"simple\" xlink:href=\"S0143385715000346_inline4\" /><jats:tex-math>$\\unicode[STIX]{x1D708}\\rightarrow \\infty$</jats:tex-math></jats:alternatives></jats:inline-formula>. Some numerical computations with the truncated Gauss map and Bowen–Series maps illustrate these results.</jats:p>","lang":"eng"}],"publication":"Ergodic Theory and Dynamical Systems","issue":"1","user_id":"49178","volume":37,"page":"1-58","publisher":"Cambridge University Press (CUP)","_id":"31291","status":"public","external_id":{"arxiv":["1302.3087"]},"citation":{"bibtex":"@article{ARNOLDI_FAURE_Weich_2015, title={Asymptotic spectral gap and Weyl law for Ruelle resonances of open partially expanding maps}, volume={37}, DOI={<a href=\"https://doi.org/10.1017/etds.2015.34\">10.1017/etds.2015.34</a>}, number={1}, journal={Ergodic Theory and Dynamical Systems}, publisher={Cambridge University Press (CUP)}, author={ARNOLDI, JEAN FRANCOIS and FAURE, FRÉDÉRIC and Weich, Tobias}, year={2015}, pages={1–58} }","ama":"ARNOLDI JF, FAURE F, Weich T. Asymptotic spectral gap and Weyl law for Ruelle resonances of open partially expanding maps. <i>Ergodic Theory and Dynamical Systems</i>. 2015;37(1):1-58. doi:<a href=\"https://doi.org/10.1017/etds.2015.34\">10.1017/etds.2015.34</a>","mla":"ARNOLDI, JEAN FRANCOIS, et al. “Asymptotic Spectral Gap and Weyl Law for Ruelle Resonances of Open Partially Expanding Maps.” <i>Ergodic Theory and Dynamical Systems</i>, vol. 37, no. 1, Cambridge University Press (CUP), 2015, pp. 1–58, doi:<a href=\"https://doi.org/10.1017/etds.2015.34\">10.1017/etds.2015.34</a>.","short":"J.F. ARNOLDI, F. FAURE, T. Weich, Ergodic Theory and Dynamical Systems 37 (2015) 1–58.","chicago":"ARNOLDI, JEAN FRANCOIS, FRÉDÉRIC FAURE, and Tobias Weich. “Asymptotic Spectral Gap and Weyl Law for Ruelle Resonances of Open Partially Expanding Maps.” <i>Ergodic Theory and Dynamical Systems</i> 37, no. 1 (2015): 1–58. <a href=\"https://doi.org/10.1017/etds.2015.34\">https://doi.org/10.1017/etds.2015.34</a>.","ieee":"J. F. ARNOLDI, F. FAURE, and T. Weich, “Asymptotic spectral gap and Weyl law for Ruelle resonances of open partially expanding maps,” <i>Ergodic Theory and Dynamical Systems</i>, vol. 37, no. 1, pp. 1–58, 2015, doi: <a href=\"https://doi.org/10.1017/etds.2015.34\">10.1017/etds.2015.34</a>.","apa":"ARNOLDI, J. F., FAURE, F., &#38; Weich, T. (2015). Asymptotic spectral gap and Weyl law for Ruelle resonances of open partially expanding maps. <i>Ergodic Theory and Dynamical Systems</i>, <i>37</i>(1), 1–58. <a href=\"https://doi.org/10.1017/etds.2015.34\">https://doi.org/10.1017/etds.2015.34</a>"}},{"user_id":"49178","volume":337,"page":"727-765","_id":"31293","publisher":"Springer Science and Business Media LLC","status":"public","external_id":{"arxiv":["1403.7419 "]},"citation":{"mla":"Weich, Tobias. “Resonance Chains and Geometric Limits on Schottky Surfaces.” <i>Communications in Mathematical Physics</i>, vol. 337, no. 2, Springer Science and Business Media LLC, 2015, pp. 727–65, doi:<a href=\"https://doi.org/10.1007/s00220-015-2359-z\">10.1007/s00220-015-2359-z</a>.","ama":"Weich T. Resonance Chains and Geometric Limits on Schottky Surfaces. <i>Communications in Mathematical Physics</i>. 2015;337(2):727-765. doi:<a href=\"https://doi.org/10.1007/s00220-015-2359-z\">10.1007/s00220-015-2359-z</a>","bibtex":"@article{Weich_2015, title={Resonance Chains and Geometric Limits on Schottky Surfaces}, volume={337}, DOI={<a href=\"https://doi.org/10.1007/s00220-015-2359-z\">10.1007/s00220-015-2359-z</a>}, number={2}, journal={Communications in Mathematical Physics}, publisher={Springer Science and Business Media LLC}, author={Weich, Tobias}, year={2015}, pages={727–765} }","apa":"Weich, T. (2015). Resonance Chains and Geometric Limits on Schottky Surfaces. <i>Communications in Mathematical Physics</i>, <i>337</i>(2), 727–765. <a href=\"https://doi.org/10.1007/s00220-015-2359-z\">https://doi.org/10.1007/s00220-015-2359-z</a>","ieee":"T. Weich, “Resonance Chains and Geometric Limits on Schottky Surfaces,” <i>Communications in Mathematical Physics</i>, vol. 337, no. 2, pp. 727–765, 2015, doi: <a href=\"https://doi.org/10.1007/s00220-015-2359-z\">10.1007/s00220-015-2359-z</a>.","short":"T. Weich, Communications in Mathematical Physics 337 (2015) 727–765.","chicago":"Weich, Tobias. “Resonance Chains and Geometric Limits on Schottky Surfaces.” <i>Communications in Mathematical Physics</i> 337, no. 2 (2015): 727–65. <a href=\"https://doi.org/10.1007/s00220-015-2359-z\">https://doi.org/10.1007/s00220-015-2359-z</a>."},"doi":"10.1007/s00220-015-2359-z","language":[{"iso":"eng"}],"date_updated":"2022-05-19T10:16:21Z","publication_status":"published","intvolume":"       337","title":"Resonance Chains and Geometric Limits on Schottky Surfaces","year":"2015","author":[{"id":"49178","last_name":"Weich","first_name":"Tobias","orcid":"0000-0002-9648-6919","full_name":"Weich, Tobias"}],"publication_identifier":{"issn":["0010-3616","1432-0916"]},"type":"journal_article","keyword":["Mathematical Physics","Statistical and Nonlinear Physics"],"department":[{"_id":"10"},{"_id":"623"},{"_id":"548"}],"date_created":"2022-05-17T12:56:21Z","publication":"Communications in Mathematical Physics","issue":"2"},{"citation":{"short":"A. Tiranov, J. Lavoie, A. Ferrier, P. Goldner, V.B. Verma, S.W. Nam, R.P. Mirin, A.E. Lita, F. Marsili, H. Herrmann, C. Silberhorn, N. Gisin, M. Afzelius, F. Bussières, Optica 2 (2015).","chicago":"Tiranov, Alexey, Jonathan Lavoie, Alban Ferrier, Philippe Goldner, Varun B. Verma, Sae Woo Nam, Richard P. Mirin, et al. “Storage of Hyperentanglement in a Solid-State Quantum Memory.” <i>Optica</i> 2, no. 4 (2015). <a href=\"https://doi.org/10.1364/optica.2.000279\">https://doi.org/10.1364/optica.2.000279</a>.","apa":"Tiranov, A., Lavoie, J., Ferrier, A., Goldner, P., Verma, V. B., Nam, S. W., Mirin, R. P., Lita, A. E., Marsili, F., Herrmann, H., Silberhorn, C., Gisin, N., Afzelius, M., &#38; Bussières, F. (2015). Storage of hyperentanglement in a solid-state quantum memory. <i>Optica</i>, <i>2</i>(4), Article 279. <a href=\"https://doi.org/10.1364/optica.2.000279\">https://doi.org/10.1364/optica.2.000279</a>","ieee":"A. Tiranov <i>et al.</i>, “Storage of hyperentanglement in a solid-state quantum memory,” <i>Optica</i>, vol. 2, no. 4, Art. no. 279, 2015, doi: <a href=\"https://doi.org/10.1364/optica.2.000279\">10.1364/optica.2.000279</a>.","ama":"Tiranov A, Lavoie J, Ferrier A, et al. Storage of hyperentanglement in a solid-state quantum memory. <i>Optica</i>. 2015;2(4). doi:<a href=\"https://doi.org/10.1364/optica.2.000279\">10.1364/optica.2.000279</a>","bibtex":"@article{Tiranov_Lavoie_Ferrier_Goldner_Verma_Nam_Mirin_Lita_Marsili_Herrmann_et al._2015, title={Storage of hyperentanglement in a solid-state quantum memory}, volume={2}, DOI={<a href=\"https://doi.org/10.1364/optica.2.000279\">10.1364/optica.2.000279</a>}, number={4279}, journal={Optica}, publisher={The Optical Society}, author={Tiranov, Alexey and Lavoie, Jonathan and Ferrier, Alban and Goldner, Philippe and Verma, Varun B. and Nam, Sae Woo and Mirin, Richard P. and Lita, Adriana E. and Marsili, Francesco and Herrmann, Harald and et al.}, year={2015} }","mla":"Tiranov, Alexey, et al. “Storage of Hyperentanglement in a Solid-State Quantum Memory.” <i>Optica</i>, vol. 2, no. 4, 279, The Optical Society, 2015, doi:<a href=\"https://doi.org/10.1364/optica.2.000279\">10.1364/optica.2.000279</a>."},"volume":2,"user_id":"26263","_id":"38086","publisher":"The Optical Society","status":"public","department":[{"_id":"288"},{"_id":"15"},{"_id":"623"},{"_id":"230"}],"type":"journal_article","keyword":["Atomic and Molecular Physics","and Optics","Electronic","Optical and Magnetic Materials"],"date_created":"2023-01-23T10:55:10Z","issue":"4","publication":"Optica","doi":"10.1364/optica.2.000279","language":[{"iso":"eng"}],"article_number":"279","intvolume":"         2","date_updated":"2023-01-30T12:05:33Z","publication_status":"published","author":[{"last_name":"Tiranov","first_name":"Alexey","full_name":"Tiranov, Alexey"},{"first_name":"Jonathan","last_name":"Lavoie","full_name":"Lavoie, Jonathan"},{"full_name":"Ferrier, Alban","last_name":"Ferrier","first_name":"Alban"},{"full_name":"Goldner, Philippe","last_name":"Goldner","first_name":"Philippe"},{"last_name":"Verma","first_name":"Varun B.","full_name":"Verma, Varun B."},{"full_name":"Nam, Sae Woo","first_name":"Sae Woo","last_name":"Nam"},{"full_name":"Mirin, Richard P.","last_name":"Mirin","first_name":"Richard P."},{"last_name":"Lita","first_name":"Adriana E.","full_name":"Lita, Adriana E."},{"last_name":"Marsili","first_name":"Francesco","full_name":"Marsili, Francesco"},{"last_name":"Herrmann","first_name":"Harald","full_name":"Herrmann, Harald"},{"full_name":"Silberhorn, Christine","last_name":"Silberhorn","first_name":"Christine"},{"last_name":"Gisin","first_name":"Nicolas","full_name":"Gisin, Nicolas"},{"full_name":"Afzelius, Mikael","last_name":"Afzelius","first_name":"Mikael"},{"last_name":"Bussières","first_name":"Félix","full_name":"Bussières, Félix"}],"publication_identifier":{"issn":["2334-2536"]},"year":"2015","title":"Storage of hyperentanglement in a solid-state quantum memory"},{"user_id":"44763","article_number":"085101","language":[{"iso":"ger"}],"_id":"42023","series_title":"J. Phys. D: Appl. Phys","date_updated":"2023-02-24T08:57:07Z","publication_status":"published","year":"2015","title":"Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources","status":"public","author":[{"last_name":" Jöns","first_name":"Klaus D.","full_name":" Jöns, Klaus D."},{"full_name":"U. Rengstl, U","first_name":"U","last_name":"U. Rengstl"},{"last_name":"Ostermann","first_name":"M","full_name":"Ostermann, M"},{"first_name":"F","last_name":"Hargart","full_name":"Hargart, F"},{"full_name":"Heldmaier, M","last_name":"Heldmaier","first_name":"M"},{"last_name":"Bounouar","first_name":"S","full_name":"Bounouar, S"},{"last_name":" Ulrich","first_name":"S.M","full_name":" Ulrich, S.M"},{"full_name":" Jetter, M","last_name":" Jetter","first_name":"M"},{"full_name":"Michler, P","first_name":"P","last_name":"Michler"}],"type":"conference","department":[{"_id":"623"}],"date_created":"2023-02-13T07:41:18Z","citation":{"short":"K.D.  Jöns, U. U. Rengstl, M. Ostermann, F. Hargart, M. Heldmaier, S. Bounouar, S.M.  Ulrich, M.  Jetter, P. Michler, (2015).","chicago":"Jöns, Klaus D., U U. Rengstl, M Ostermann, F Hargart, M Heldmaier, S Bounouar, S.M  Ulrich, M  Jetter, and P Michler. “Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources.” J. Phys. D: Appl. Phys, 2015.","apa":"Jöns, K. D., U. Rengstl, U., Ostermann, M., Hargart, F., Heldmaier, M., Bounouar, S.,  Ulrich, S. M.,  Jetter, M., &#38; Michler, P. (2015). <i>Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources</i> (No. 085101).","ieee":"K. D.  Jöns <i>et al.</i>, “Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources.” 2015.","ama":"Jöns KD, U. Rengstl U, Ostermann M, et al. Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources. Published online 2015.","bibtex":"@article{ Jöns_U. Rengstl_Ostermann_Hargart_Heldmaier_Bounouar_ Ulrich_ Jetter_Michler_2015, series={J. Phys. D: Appl. Phys}, title={Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources}, number={085101}, author={ Jöns, Klaus D. and U. Rengstl, U and Ostermann, M and Hargart, F and Heldmaier, M and Bounouar, S and  Ulrich, S.M and  Jetter, M and Michler, P}, year={2015}, collection={J. Phys. D: Appl. Phys} }","mla":"Jöns, Klaus D., et al. <i>Monolithic on-chip integration of semiconductor waveguides, beamsplitters and single-photon sources</i>. 085101, 2015."}},{"doi":"10.1007/978-3-662-47672-7_50","main_file_link":[{"url":"https://arxiv.org/abs/1409.3182","open_access":"1"}],"language":[{"iso":"eng"}],"publication_status":"published","date_updated":"2023-02-28T11:02:07Z","year":"2015","title":"Ground State Connectivity of Local Hamiltonians","publication_identifier":{"isbn":["978-3-662-47672-7"]},"author":[{"id":"71541","full_name":"Gharibian, Sevag","first_name":"Sevag","last_name":"Gharibian","orcid":"0000-0002-9992-3379"},{"full_name":"Sikora, Jamie","first_name":"Jamie","last_name":"Sikora"}],"type":"conference","department":[{"_id":"623"},{"_id":"7"}],"date_created":"2019-03-01T11:37:54Z","abstract":[{"lang":"eng","text":"The study of ground state energies of local Hamiltonians has played a fundamental role in quantum complexity theory. In this paper, we take a new direction by introducing the physically motivated notion of ``ground state connectivity'' of local Hamiltonians, which captures problems in areas ranging from quantum stabilizer codes to quantum memories. We show that determining how ``connected'' the ground space of a local Hamiltonian is can range from QCMA-complete to PSPACE-complete, as well as NEXP-complete for an appropriately defined ``succinct'' version of the problem. As a result, we obtain a natural QCMA-complete problem, a goal which has generally proven difficult since the conception of QCMA over a decade ago. Our proofs rely on a new technical tool, the Traversal Lemma, which analyzes the Hilbert space a local unitary evolution must traverse under certain conditions. We show that this lemma is essentially tight with respect to the length of the unitary evolution in question."}],"publication":"International Colloquium on Automata, Languages, and Programming (ICALP 2015)","user_id":"71541","editor":[{"full_name":"Halld{\\'o}rsson, Magn{\\'u}s M.","last_name":"Halld{\\'o}rsson","first_name":"Magn{\\'u}s M."},{"last_name":"Iwama","first_name":"Kazuo","full_name":"Iwama, Kazuo"},{"full_name":"Kobayashi, Naoki","first_name":"Naoki","last_name":"Kobayashi"},{"full_name":"Speckmann, Bettina","last_name":"Speckmann","first_name":"Bettina"}],"page":"617-628","_id":"8164","publisher":"Springer Berlin Heidelberg","status":"public","conference":{"location":"Kyoto, Japan","name":"International Colloquium on Automata, Languages, and Programming (ICALP)"},"oa":"1","external_id":{"arxiv":["1409.3182"]},"place":"Berlin, Heidelberg","citation":{"ieee":"S. Gharibian and J. Sikora, “Ground State Connectivity of Local Hamiltonians,” in <i>International Colloquium on Automata, Languages, and Programming (ICALP 2015)</i>, Kyoto, Japan, 2015, pp. 617–628, doi: <a href=\"https://doi.org/10.1007/978-3-662-47672-7_50\">10.1007/978-3-662-47672-7_50</a>.","apa":"Gharibian, S., &#38; Sikora, J. (2015). Ground State Connectivity of Local Hamiltonians. In M. M. Halld{\\’o}rsson, K. Iwama, N. Kobayashi, &#38; B. Speckmann (Eds.), <i>International Colloquium on Automata, Languages, and Programming (ICALP 2015)</i> (pp. 617–628). Springer Berlin Heidelberg. <a href=\"https://doi.org/10.1007/978-3-662-47672-7_50\">https://doi.org/10.1007/978-3-662-47672-7_50</a>","mla":"Gharibian, Sevag, and Jamie Sikora. “Ground State Connectivity of Local Hamiltonians.” <i>International Colloquium on Automata, Languages, and Programming (ICALP 2015)</i>, edited by Magn{\\’u}s M. Halld{\\’o}rsson et al., Springer Berlin Heidelberg, 2015, pp. 617–28, doi:<a href=\"https://doi.org/10.1007/978-3-662-47672-7_50\">10.1007/978-3-662-47672-7_50</a>.","bibtex":"@inproceedings{Gharibian_Sikora_2015, place={Berlin, Heidelberg}, title={Ground State Connectivity of Local Hamiltonians}, DOI={<a href=\"https://doi.org/10.1007/978-3-662-47672-7_50\">10.1007/978-3-662-47672-7_50</a>}, booktitle={International Colloquium on Automata, Languages, and Programming (ICALP 2015)}, publisher={Springer Berlin Heidelberg}, author={Gharibian, Sevag and Sikora, Jamie}, editor={Halld{\\’o}rsson, Magn{\\’u}s M. and Iwama, Kazuo and Kobayashi, Naoki and Speckmann, Bettina}, year={2015}, pages={617–628} }","chicago":"Gharibian, Sevag, and Jamie Sikora. “Ground State Connectivity of Local Hamiltonians.” In <i>International Colloquium on Automata, Languages, and Programming (ICALP 2015)</i>, edited by Magn{\\’u}s M. Halld{\\’o}rsson, Kazuo Iwama, Naoki Kobayashi, and Bettina Speckmann, 617–28. Berlin, Heidelberg: Springer Berlin Heidelberg, 2015. <a href=\"https://doi.org/10.1007/978-3-662-47672-7_50\">https://doi.org/10.1007/978-3-662-47672-7_50</a>.","ama":"Gharibian S, Sikora J. Ground State Connectivity of Local Hamiltonians. In: Halld{\\’o}rsson MM, Iwama K, Kobayashi N, Speckmann B, eds. <i>International Colloquium on Automata, Languages, and Programming (ICALP 2015)</i>. Springer Berlin Heidelberg; 2015:617-628. doi:<a href=\"https://doi.org/10.1007/978-3-662-47672-7_50\">10.1007/978-3-662-47672-7_50</a>","short":"S. Gharibian, J. Sikora, in: M.M. Halld{\\’o}rsson, K. Iwama, N. Kobayashi, B. Speckmann (Eds.), International Colloquium on Automata, Languages, and Programming (ICALP 2015), Springer Berlin Heidelberg, Berlin, Heidelberg, 2015, pp. 617–628."}},{"article_type":"review","intvolume":"        10","publication_status":"published","date_updated":"2023-02-28T11:02:21Z","author":[{"id":"71541","full_name":"Gharibian, Sevag","last_name":"Gharibian","orcid":"0000-0002-9992-3379","first_name":"Sevag"},{"full_name":"Huang, Yichen","last_name":"Huang","first_name":"Yichen"},{"full_name":"Landau, Zeph","last_name":"Landau","first_name":"Zeph"},{"full_name":"Woo Shin, Seung","last_name":"Woo Shin","first_name":"Seung"}],"publication_identifier":{"issn":["1551-305X"]},"year":"2015","title":"Quantum Hamiltonian Complexity","doi":"10.1561/0400000066","language":[{"iso":"eng"}],"main_file_link":[{"url":"https://arxiv.org/abs/1401.3916","open_access":"1"}],"extern":"1","abstract":[{"lang":"eng","text":"Constraint satisfaction problems are a central pillar of modern computational complexity theory. This survey provides an introduction to the rapidly growing field of Quantum Hamiltonian Complexity, which includes the study of quantum constraint satisfaction problems. Over the past decade and a half, this field has witnessed fundamental breakthroughs, ranging from the establishment of a “Quantum Cook-Levin Theorem” to deep insights into the structure of 1D low-temperature quantum systems via so-called area laws. Our aim here is to provide a computer science-oriented introduction to the subject in order to help bridge the language barrier between computer scientists and physicists in the field. As such, we include the following in this survey: (1) The motivations and history of the field, (2) a glossary of condensed matter physics terms explained in computer-science friendly language, (3) overviews of central ideas from condensed matter physics, such as indistinguishable particles, mean field theory, tensor networks, and area laws, and (4) brief expositions of selected computer science-based results in the area. For example, as part of the latter, we provide a novel information theoretic presentation of Bravyi’s polynomial time algorithm for Quantum 2-SAT."}],"publication":"Foundations and Trends® in Theoretical Computer Science","issue":"3","department":[{"_id":"623"},{"_id":"7"}],"type":"journal_article","date_created":"2019-03-01T11:45:40Z","status":"public","volume":10,"user_id":"71541","_id":"8166","page":"159-282","citation":{"bibtex":"@article{Gharibian_Huang_Landau_Woo Shin_2015, title={Quantum Hamiltonian Complexity}, volume={10}, DOI={<a href=\"https://doi.org/10.1561/0400000066\">10.1561/0400000066</a>}, number={3}, journal={Foundations and Trends® in Theoretical Computer Science}, author={Gharibian, Sevag and Huang, Yichen and Landau, Zeph and Woo Shin, Seung}, year={2015}, pages={159–282} }","ama":"Gharibian S, Huang Y, Landau Z, Woo Shin S. Quantum Hamiltonian Complexity. <i>Foundations and Trends® in Theoretical Computer Science</i>. 2015;10(3):159-282. doi:<a href=\"https://doi.org/10.1561/0400000066\">10.1561/0400000066</a>","mla":"Gharibian, Sevag, et al. “Quantum Hamiltonian Complexity.” <i>Foundations and Trends® in Theoretical Computer Science</i>, vol. 10, no. 3, 2015, pp. 159–282, doi:<a href=\"https://doi.org/10.1561/0400000066\">10.1561/0400000066</a>.","chicago":"Gharibian, Sevag, Yichen Huang, Zeph Landau, and Seung Woo Shin. “Quantum Hamiltonian Complexity.” <i>Foundations and Trends® in Theoretical Computer Science</i> 10, no. 3 (2015): 159–282. <a href=\"https://doi.org/10.1561/0400000066\">https://doi.org/10.1561/0400000066</a>.","short":"S. Gharibian, Y. Huang, Z. Landau, S. Woo Shin, Foundations and Trends® in Theoretical Computer Science 10 (2015) 159–282.","ieee":"S. Gharibian, Y. Huang, Z. Landau, and S. Woo Shin, “Quantum Hamiltonian Complexity,” <i>Foundations and Trends® in Theoretical Computer Science</i>, vol. 10, no. 3, pp. 159–282, 2015, doi: <a href=\"https://doi.org/10.1561/0400000066\">10.1561/0400000066</a>.","apa":"Gharibian, S., Huang, Y., Landau, Z., &#38; Woo Shin, S. (2015). Quantum Hamiltonian Complexity. <i>Foundations and Trends® in Theoretical Computer Science</i>, <i>10</i>(3), 159–282. <a href=\"https://doi.org/10.1561/0400000066\">https://doi.org/10.1561/0400000066</a>"},"oa":"1","external_id":{"arxiv":["1401.3916"]}},{"intvolume":"        15","article_type":"original","date_updated":"2023-02-28T11:02:35Z","publication_status":"published","author":[{"id":"71541","first_name":"Sevag","orcid":"0000-0002-9992-3379","last_name":"Gharibian","full_name":"Gharibian, Sevag"},{"full_name":"Landau, Zeph","first_name":"Zeph","last_name":"Landau"},{"full_name":"Woo Shin, Seung","first_name":"Seung","last_name":"Woo Shin"},{"full_name":"Wang, Guoming","last_name":"Wang","first_name":"Guoming"}],"year":"2015","title":"Tensor network non-zero testing","language":[{"iso":"eng"}],"main_file_link":[{"url":"https://arxiv.org/abs/1406.5279","open_access":"1"}],"abstract":[{"text":"Tensor networks are a central tool in condensed matter physics. In this paper, we initiate the study of tensor network non-zero testing (TNZ): Given a tensor network T, does T represent a non-zero vector? We show that TNZ is not in the Polynomial-Time Hierarchy unless the hierarchy collapses. We next show (among other results) that the special cases of TNZ on non-negative and injective tensor networks are in NP. Using this, we make a simple observation: The commuting variant of the MA-complete stoquastic k-SAT problem on D-dimensional qudits is in NP for logarithmic k and constant D. This reveals the first class of quantum Hamiltonians whose commuting variant is known to be in NP for all (1) logarithmic k, (2) constant D, and (3) for arbitrary interaction graphs.\r\n","lang":"eng"}],"extern":"1","publication":"Quantum Information & Computation","issue":"9{\\&}10","department":[{"_id":"623"},{"_id":"7"}],"type":"journal_article","date_created":"2019-03-01T11:53:08Z","status":"public","volume":15,"user_id":"71541","_id":"8168","page":"885-899","citation":{"apa":"Gharibian, S., Landau, Z., Woo Shin, S., &#38; Wang, G. (2015). Tensor network non-zero testing. <i>Quantum Information &#38; Computation</i>, <i>15</i>(9{\\ &#38; }10), 885–899.","ieee":"S. Gharibian, Z. Landau, S. Woo Shin, and G. Wang, “Tensor network non-zero testing,” <i>Quantum Information &#38; Computation</i>, vol. 15, no. 9{\\ &#38; }10, pp. 885–899, 2015.","short":"S. Gharibian, Z. Landau, S. Woo Shin, G. Wang, Quantum Information &#38; Computation 15 (2015) 885–899.","chicago":"Gharibian, Sevag, Zeph Landau, Seung Woo Shin, and Guoming Wang. “Tensor Network Non-Zero Testing.” <i>Quantum Information &#38; Computation</i> 15, no. 9{\\ &#38; }10 (2015): 885–99.","mla":"Gharibian, Sevag, et al. “Tensor Network Non-Zero Testing.” <i>Quantum Information &#38; Computation</i>, vol. 15, no. 9{\\ &#38; }10, 2015, pp. 885–99.","ama":"Gharibian S, Landau Z, Woo Shin S, Wang G. Tensor network non-zero testing. <i>Quantum Information &#38; Computation</i>. 2015;15(9{\\ &#38; }10):885-899.","bibtex":"@article{Gharibian_Landau_Woo Shin_Wang_2015, title={Tensor network non-zero testing}, volume={15}, number={9{\\ &#38; }10}, journal={Quantum Information &#38; Computation}, author={Gharibian, Sevag and Landau, Zeph and Woo Shin, Seung and Wang, Guoming}, year={2015}, pages={885–899} }"},"oa":"1","external_id":{"arxiv":["1406.5279"]}},{"citation":{"chicago":"Kaczmarek, Krzysztof T., Dylan J. Saunders, Michael R. Sprague, W. Steven Kolthammer, Amir Feizpour, Patrick M. Ledingham, Benjamin Brecht, Eilon Poem, Ian A. Walmsley, and Joshua Nunn. “Ultrahigh and Persistent Optical Depths of Cesium in Kagomé-Type Hollow-Core Photonic Crystal Fibers.” <i>Optics Letters</i> 40, no. 23 (2015). <a href=\"https://doi.org/10.1364/ol.40.005582\">https://doi.org/10.1364/ol.40.005582</a>.","short":"K.T. Kaczmarek, D.J. Saunders, M.R. Sprague, W.S. Kolthammer, A. Feizpour, P.M. Ledingham, B. Brecht, E. Poem, I.A. Walmsley, J. Nunn, Optics Letters 40 (2015).","apa":"Kaczmarek, K. T., Saunders, D. J., Sprague, M. R., Kolthammer, W. S., Feizpour, A., Ledingham, P. M., Brecht, B., Poem, E., Walmsley, I. A., &#38; Nunn, J. (2015). Ultrahigh and persistent optical depths of cesium in Kagomé-type hollow-core photonic crystal fibers. <i>Optics Letters</i>, <i>40</i>(23), Article 5582. <a href=\"https://doi.org/10.1364/ol.40.005582\">https://doi.org/10.1364/ol.40.005582</a>","ieee":"K. T. Kaczmarek <i>et al.</i>, “Ultrahigh and persistent optical depths of cesium in Kagomé-type hollow-core photonic crystal fibers,” <i>Optics Letters</i>, vol. 40, no. 23, Art. no. 5582, 2015, doi: <a href=\"https://doi.org/10.1364/ol.40.005582\">10.1364/ol.40.005582</a>.","ama":"Kaczmarek KT, Saunders DJ, Sprague MR, et al. Ultrahigh and persistent optical depths of cesium in Kagomé-type hollow-core photonic crystal fibers. <i>Optics Letters</i>. 2015;40(23). doi:<a href=\"https://doi.org/10.1364/ol.40.005582\">10.1364/ol.40.005582</a>","bibtex":"@article{Kaczmarek_Saunders_Sprague_Kolthammer_Feizpour_Ledingham_Brecht_Poem_Walmsley_Nunn_2015, title={Ultrahigh and persistent optical depths of cesium in Kagomé-type hollow-core photonic crystal fibers}, volume={40}, DOI={<a href=\"https://doi.org/10.1364/ol.40.005582\">10.1364/ol.40.005582</a>}, number={235582}, journal={Optics Letters}, publisher={Optica Publishing Group}, author={Kaczmarek, Krzysztof T. and Saunders, Dylan J. and Sprague, Michael R. and Kolthammer, W. Steven and Feizpour, Amir and Ledingham, Patrick M. and Brecht, Benjamin and Poem, Eilon and Walmsley, Ian A. and Nunn, Joshua}, year={2015} }","mla":"Kaczmarek, Krzysztof T., et al. “Ultrahigh and Persistent Optical Depths of Cesium in Kagomé-Type Hollow-Core Photonic Crystal Fibers.” <i>Optics Letters</i>, vol. 40, no. 23, 5582, Optica Publishing Group, 2015, doi:<a href=\"https://doi.org/10.1364/ol.40.005582\">10.1364/ol.40.005582</a>."},"volume":40,"user_id":"27150","_id":"63735","publisher":"Optica Publishing Group","status":"public","department":[{"_id":"15"},{"_id":"623"}],"type":"journal_article","date_created":"2026-01-26T15:10:24Z","publication":"Optics Letters","issue":"23","doi":"10.1364/ol.40.005582","language":[{"iso":"eng"}],"article_number":"5582","intvolume":"        40","publication_status":"published","date_updated":"2026-01-26T15:10:56Z","publication_identifier":{"issn":["0146-9592","1539-4794"]},"author":[{"last_name":"Kaczmarek","first_name":"Krzysztof T.","full_name":"Kaczmarek, Krzysztof T."},{"full_name":"Saunders, Dylan J.","first_name":"Dylan J.","last_name":"Saunders"},{"first_name":"Michael R.","last_name":"Sprague","full_name":"Sprague, Michael R."},{"full_name":"Kolthammer, W. Steven","last_name":"Kolthammer","first_name":"W. Steven"},{"full_name":"Feizpour, Amir","first_name":"Amir","last_name":"Feizpour"},{"full_name":"Ledingham, Patrick M.","last_name":"Ledingham","first_name":"Patrick M."},{"last_name":"Brecht","first_name":"Benjamin","orcid":"0000-0003-4140-0556 ","full_name":"Brecht, Benjamin","id":"27150"},{"last_name":"Poem","first_name":"Eilon","full_name":"Poem, Eilon"},{"last_name":"Walmsley","first_name":"Ian A.","full_name":"Walmsley, Ian A."},{"first_name":"Joshua","last_name":"Nunn","full_name":"Nunn, Joshua"}],"year":"2015","title":"Ultrahigh and persistent optical depths of cesium in Kagomé-type hollow-core photonic crystal fibers"}]
