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Integrated photonics is an essential technology for optical quantum computing.
“Measurement of subpicosecond time intervals between two photons by interference”
C. K. Hong, Z. Y. Ou, and L. Mandel · 1987
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“How to generate random matrices from the classical compact groups” (2006)
Francesco Mezzadri · 2006
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“Linear optical quantum computing with photonic qubits”
Pieter Kok, W. J. Munro, Kae Nemoto, T. C. Ralph, Jonathan P. Dowling, and G. J. Milburn · 2007
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“High-Speed Optical 1 $\times$ 4 Switch Based on Generalized Mach–Zehnder Interferometer With Hybrid Configuration of Silica-Based PLC and Lithium Niobate Phase-Shifter Array”
K. Suzuki, T. Yamada, M. Ishii, T. Shibata, and S. Mino · 2007
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“The quantum internet”
H. J. Kimble · 2008
Earlier work this paper cites.
“The Computational Complexity of Linear Optics”
Scott Aaronson and Alex Arkhipov · 2011
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“Planar waveguides with less than 0.1 dB/m propagation loss fabricated with wafer bonding”
Jared F. Bauters, Martijn J. R. Heck, Demis D. John, Jonathon S. Barton, Christiaan M. Bruinink, Arne Leinse, René G. Heideman, Daniel J. Blumenthal, and John E. Bowers · 2011
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“Generating, manipulating and measuring entanglement and mixture with a reconfigurable photonic circuit”
P. J. Shadbolt, M. R. Verde, A. Peruzzo, A. Politi, A. Laing, M. Lobino, J. C. F. Matthews, M. G. Thompson, and J. L. O’Brien · 2012
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“Integrated multimode interferometers with arbitrary designs for photonic boson sampling”
Andrea Crespi, Roberto Osellame, Roberta Ramponi, Daniel J. Brod, Ernesto F. Galvão, Nicolò Spagnolo, Chiara Vitelli, Enrico Maiorino, Paolo Mataloni, and Fabio Sciarrino · 2013
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“Boson Sampling on a Photonic Chip”
Justin B. Spring, Benjamin J. Metcalf, Peter C. Humphreys, W. Steven Kolthammer, Xian-Min Jin, Marco Barbieri, Animesh Datta, Nicholas Thomas-Peter, Nathan K. Langford, Dmytro Kundys, James C. Gates, Brian J. Smith, Peter G. R. Smith, and Ian A. Walmsley · 2013
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“Experimental boson sampling”
Max Tillmann, Borivoje Dakić, René Heilmann, Stefan Nolte, Alexander Szameit, and Philip Walther · 2013
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“Scalable, Low-Energy Hybrid Photonic Space Switch”
Q. Cheng, A. Wonfor, R. V. Penty, and I. H. White · 2013
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“NbTiN superconducting nanowire detectors for visible and telecom wavelengths single photon counting on Si3N4 photonic circuits”
C. Schuck, W. H. P. Pernice, and H. X. Tang · 2013
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“Bayesian approach to Boson sampling validation”
Marco Bentivegna, Nicolò Spagnolo, Chiara Vitelli, Daniel J. Brod, Andrea Crespi, Fulvio Flamini, Roberta Ramponi, Paolo Mataloni, Roberto Osellame, Ernesto F. Galvão, and Fabio Sciarrino · 2014
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“Hybrid discrete- and continuous-variable quantum information”
Ulrik L. Andersen, Jonas S. Neergaard-Nielsen, Peter van Loock, and Akira Furusawa · 2015
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“Universal linear optics”
Jacques Carolan, Christopher Harrold, Chris Sparrow, Enrique Martín-López, Nicholas J. Russell, Joshua W. Silverstone, Peter J. Shadbolt, Nobuyuki Matsuda, Manabu Oguma, Mikitaka Itoh, Graham D. Marshall, Mark G. Thompson, Jonathan C. F. Matthews, Toshikazu Hashimoto, Jeremy L. O’Brien, and Anthony Laing · 2015
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“Towards practical quantum metrology with photon counting”
Jonathan CF Matthews, Xiao-Qi Zhou, Hugo Cable, Peter J Shadbolt, Dylan J Saunders, Gabriel A Durkin, Geoff J Pryde, and Jeremy L O’Brien · 2016
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“Optimal design for universal multiport interferometers”
William R. Clements, Peter C. Humphreys, Benjamin J. Metcalf, W. Steven Kolthammer, and Ian A. Walmsley · 2016
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“Demonstration of a 4 × 4-port universal linear circuit”
Antonio Ribeiro, Alfonso Ruocco, Laurent Vanacker, and Wim Bogaerts · 2016
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“Reconfigurable SDM Switching Using Novel Silicon Photonic Integrated Circuit”
Yunhong Ding, Valerija Kamchevska, Kjeld Dalgaard, Feihong Ye, Rameez Asif, Simon Gross, Michael J. Withford, Michael Galili, Toshio Morioka, and Leif Katsuo Oxenløwe · 2016
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“Quantum interference in heterogeneous superconducting-photonic circuits on a silicon chip”
C. Schuck, X. Guo, L. Fan, X. Ma, M. Poot, and H. X. Tang · 2016
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“Quantum transport simulations in a programmable nanophotonic processor”
Nicholas C. Harris, Gregory R. Steinbrecher, Mihika Prabhu, Yoav Lahini, Jacob Mower, Darius Bunandar, Changchen Chen, Franco N. C. Wong, Tom Baehr-Jones, Michael berg, Seth Lloyd, and Dirk Englund · 2017
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“Silicon photonic processor of two-qubit entangling quantum logic”
R Santagati, J W Silverstone, M J Strain, M Sorel, S Miki, T Yamashita, M Fujiwara, M Sasaki, H Terai, M G Tanner, C M Natarajan, R H Hadfield, J L O’Brien, and M G Thompson · 2017
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“Unscrambling light—automatically undoing strong mixing between modes”
Andrea Annoni, Emanuele Guglielmi, Marco Carminati, Giorgio Ferrari, Marco Sampietro, David AB Miller, Andrea Melloni, and Francesco Morichetti · 2017
Cited alongside, same era.
“Ultra-low-power stress-based phase actuator for microwave photonics”
Joern P. Epping, Denys Marchenko, Arne Leinse, Richard Mateman, Marcel Hoekman, Lennart Wevers, Edwin J. Klein, Chris G. H. Roeloffzen, Matthijn Dekkers, and René Heilmann · 2017
Cited alongside, same era.
“Quantum Internet: From Communication to Distributed Computing!”
Marcello Caleffi, Angela Sara Cacciapuoti, and Giuseppe Bianchi · 2018
Cited alongside, same era.
“Photonic quantum information processing: a review”
Fulvio Flamini, Nicolò Spagnolo, and Fabio Sciarrino · 2018
Cited alongside, same era.
“Simulating the vibrational quantum dynamics of molecules using photonics”
Chris Sparrow, Enrique Martín-López, Nicola Maraviglia, Alex Neville, Christopher Harrold, Jacques Carolan, Yogesh N. Joglekar, Toshikazu Hashimoto, Nobuyuki Matsuda, Jeremy L. O’Brien, David P. Tew, and Anthony Laing · 2018
Cited alongside, same era.
“Reconfigurable Integrated Optical Interferometer Network-Based Physically Unclonable Function”
Amos Matthew Smith and H. Shelton Jacinto · 2020
Later among the works it cites.
“Low-Loss, Low-Crosstalk, and Large-Scale Optical Switch Based on Silicon Photonics”
Keijiro Suzuki, Ryotaro Konoike, Satoshi Suda, Hiroyuki Matsuura, Shu Namiki, Hitoshi Kawashima, and Kazuhiro Ikeda · 2020
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“Self-Configuring and Reconfigurable Silicon Photonic Signal Processor”
Hailong Zhou, Yuhe Zhao, Xu Wang, Dingshan Gao, Jianji Dong, and Xinliang Zhang · 2020
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“On-chip deterministic operation of quantum dots in dual-mode waveguides for a plug-and-play single-photon source”
Ravitej Uppu, Hans T. Eriksen, Henri Thyrrestrup, Aslı D. Uğurlu, Ying Wang, Sven Scholz, Andreas D. Wieck, Arne Ludwig, Matthias C. Löbl, Richard J. Warburton, Peter Lodahl, and Leonardo Midolo · 2020
Later among the works it cites.
“Microresonator Based Discrete- and Continuous-Variable Quantum Sources on Silicon-Nitride”
Yun Zhao, Yoshitomo Okawachi, Bok Young Kim, Chaitali Joshi, Jae K. Jang, Alessandro Farsi, X. Ji, Michal Lipson, and Alexander L. Gaeta · 2020
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“Low-Loss Si3N4 TriPleX Optical Waveguides: Technology and Applications Overview”
C. G. H. Roeloffzen, M. Hoekman, E. J. Klein, L. S. Wevers, R. B. Timens, D. Marchenko, D. Geskus, R. Dekker, A. Alippi, R. Grootjans, A. van Rees, R. M. Oldenbeuving, J. P. Epping, R. G. Heideman, K. Wörhoff, A. Leinse, D. Geuzebroek, E. Schreuder, P. W. L. van Dijk, I. Visscher, C. Taddei, Y. Fan, C. Taballione, Y. Liu, D. Marpaung, L. Zhuang, M. Benelajla, and K. Boller · 2018
Cited alongside, same era.
“Low-loss si3n4 triplex optical waveguides: Technology and applications overview”
Chris G. H. Roeloffzen, Marcel Hoekman, Edwin J. Klein, Lennart S. Wevers, Roelof Bernardus Timens, Denys Marchenko, Dimitri Geskus, Ronald Dekker, Andrea Alippi, Robert Grootjans, Albert van Rees, Ruud M. Oldenbeuving, Jörn P. Epping, René G. Heideman, Kerstin Wörhoff, Arne Leinse, Douwe Geuzebroek, Erik Schreuder, Paulus W. L. van Dijk, Ilka Visscher, Caterina Taddei, Youwen Fan, Caterina Taballione, Yang Liu, David Marpaung, Leimeng Zhuang, Meryem Benelajla, and Klaus-J. Boller · 2018
Cited alongside, same era.
“Modular linear optical circuits”
Paolo L. Mennea, William R. Clements, Devin H. Smith, James C. Gates, Benjamin J. Metcalf, Rex H. S. Bannerman, Roel Burgwal, Jelmer J. Renema, W. Steven Kolthammer, Ian A. Walmsley, and Peter G. R. Smith · 2018
Cited alongside, same era.
“Large-scale silicon quantum photonics implementing arbitrary two-qubit processing”
Xiaogang Qiang, Xiaoqi Zhou, Jianwei Wang, Callum M. Wilkes, Thomas Loke, Sean O’Gara, Laurent Kling, Graham D. Marshall, Raffaele Santagati, Timothy C. Ralph, Jingbo B. Wang, Jeremy L. O’Brien, Mark G. Thompson, and Jonathan C. F. Matthews · 2018
Cited alongside, same era.
“Toward large-scale fault-tolerant universal photonic quantum computing”
S. Takeda and A. Furusawa · 2019
Cited alongside, same era.
“Photonic quantum information processing: A concise review”
Sergei Slussarenko and Geoff J. Pryde · 2019
Cited alongside, same era.
“8×8 reconfigurable quantum photonic processor based on silicon nitride waveguides”
Caterina Taballione, Tom A. W. Wolterink, Jasleen Lugani, Andreas Eckstein, Bryn A. Bell, Robert Grootjans, Ilka Visscher, Dimitri Geskus, Chris G. H. Roeloffzen, Jelmer J. Renema, Ian A. Walmsley, Pepijn W. H. Pinkse, and Klaus-J. Boller · 2019
Cited alongside, same era.
Later among the works it cites.
“Phase-Programmable Gaussian Boson Sampling Using Stimulated Squeezed Light”
Han-Sen Zhong, Yu-Hao Deng, Jian Qin, Hui Wang, Ming-Cheng Chen, Li-Chao Peng, Yi-Han Luo, Dian Wu, Si-Qiu Gong, Hao Su, Yi Hu, Peng Hu, Xiao-Yan Yang, Wei-Jun Zhang, Hao Li, Yuxuan Li, Xiao Jiang, Lin Gan, Guangwen Yang, Lixing You, Zhen Wang, Li Li, Nai-Le Liu, Jelmer J. Renema, Chao-Yang Lu, and Jian-Wei Pan · 2021
Later among the works it cites.
“Deterministic multi-mode gates on a scalable photonic quantum computing platform”
Mikkel V. Larsen, Xueshi Guo, Casper R. Breum, Jonas S. Neergaard-Nielsen, and Ulrik L. Andersen · 2021
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“A universal fully reconfigurable 12-mode quantum photonic processor”
Caterina Taballione, Reinier van der Meer, Henk J. Snijders, Peter Hooijschuur, Jörn P. Epping, Michiel de Goede, Ben Kassenberg, Pim Venderbosch, Chris Toebes, Hans van den Vlekkert, Pepijn W. H. Pinkse, and Jelmer J. Renema · 2021
Later among the works it cites.
“Experimental demonstration of an efficient, semi-device-independent photonic indistinguishability witness”
Reinier van der Meer, Peter Hooijschuur, Franciscus H B Somhorst, Pim Venderbosch, Michiel de Goede, Ben Kassenberg, Henk Snijders, Caterina Taballione, Jorn Epping, Hans van den Vlekkert, Nathan Walk, Pepijn W H Pinkse, and Jelmer J Renema · 2021
Later among the works it cites.
“Statistical Benchmarking of Scalable Photonic Quantum Systems”
J. Tiedau, M. Engelkemeier, B. Brecht, J. Sperling, and C. Silberhorn · 2021
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“Quantum circuits with many photons on a programmable nanophotonic chip”
J. M. Arrazola, V. Bergholm, K. Brádler, T. R. Bromley, M. J. Collins, I. Dhand, A. Fumagalli, T. Gerrits, A. Goussev, L. G. Helt, J. Hundal, T. Isacsson, R. B. Israel, J. Izaac, S. Jahangiri, R. Janik, N. Killoran, S. P. Kumar, J. Lavoie, A. E. Lita, D. H. Mahler, M. Menotti, B. Morrison, S. W. Nam, L. Neuhaus, H. Y. Qi, N. Quesada, A. Repingon, K. K. Sabapathy, M. Schuld, D. Su, J. Swinarton, A. Száva, K. Tan, P. Tan, V. D. Vaidya, Z. Vernon, Z. Zabaneh, and Y. Zhang · 2021
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“Photonic Integrated Reconfigurable Linear Processors as Neural Network Accelerators”
Lorenzo De Marinis, Marco Cococcioni, Odile Liboiron-Ladouceur, Giampiero Contestabile, Piero Castoldi, and Nicola Andriolli · 2021
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“An optical neural chip for implementing complex-valued neural network”
H. Zhang, M. Gu, X. D. Jiang, J. Thompson, H. Cai, S. Paesani, R. Santagati, A. Laing, Y. Zhang, M. H. Yung, Y. Z. Shi, F. K. Muhammad, G. Q. Lo, X. S. Luo, B. Dong, D. L. Kwong, L. C. Kwek, and A. Q. Liu · 2021
Later among the works it cites.
“Ten-Port Unitary Optical Processor on a Silicon Photonic Chip”
Rui Tang, Ryota Tanomura, Takuo Tanemura, and Yoshiaki Nakano · 2021
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“Parallel convolutional processing using an integrated photonic tensor core”
J. Feldmann, N. Youngblood, M. Karpov, H. Gehring, X. Li, M. Stappers, M. Le Gallo, X. Fu, A. Lukashchuk, A. S. Raja, J. Liu, C. D. Wright, A. Sebastian, T. J. Kippenberg, W. H. P. Pernice, and H. Bhaskaran · 2021
Later among the works it cites.
“Boson sampling in a reconfigurable continuously-coupled 3d photonic circuit” (2021)
Francesco Hoch, Simone Piacentini, Taira Giordani, Zhen-Nan Tian, Mariagrazia Iuliano, Chiara Esposito, Anita Camillini, Gonzalo Carvacho, Francesco Ceccarelli, Nicolò Spagnolo, Andrea Crespi, Fabio Sciarrino, and Roberto Osellame · 2021
Later among the works it cites.
“Implementing graph-theoretic quantum algorithms on a silicon photonic quantum walk processor”
Xiaogang Qiang, Yizhi Wang, Shichuan Xue, Renyou Ge, Lifeng Chen, Yingwen Liu, Anqi Huang, Xiang Fu, Ping Xu, Teng Yi, Fufang Xu, Mingtang Deng, Jingbo B. Wang, Jasmin D. A. Meinecke, Jonathan C. F. Matthews, Xinlun Cai, Xuejun Yang, and Junjie Wu · 2021
Later among the works it cites.
“Ultra-wide band (O to L) photonic integrated polymer cross-bar switch matrix”
Yu Wang, Jang-Uk Shin, Netsanet Tessema, Menno van den Hout, Sjoerd van der Heide, Chigo Okonkwo, Hyun-Do Jung, and Nicola Calabretta · 2021
Later among the works it cites.
“Error-protected qubits in a silicon photonic chip”
Caterina Vigliar, Stefano Paesani, Yunhong Ding, Jeremy C. Adcock, Jianwei Wang, Sam Morley-Short, Davide Bacco, Leif K. Oxenløwe, Mark G. Thompson, John G. Rarity, and Anthony Laing · 2021
Later among the works it cites.
“Reconfigurable photonics with on-chip single-photon detectors”
Samuel Gyger, Julien Zichi, Lucas Schweickert, Ali W. Elshaari, Stephan Steinhauer, Saimon F. Covre da Silva, Armando Rastelli, Val Zwiller, Klaus D. Jöns, and Carlos Errando-Herranz · 2021
Later among the works it cites.
“Quantum Internet Protocol Stack: a Comprehensive Survey” (2022)
Jessica Illiano, Marcello Caleffi, Antonio Manzalini, and Angela Sara Cacciapuoti · 2022
Closest in time.
“Quantifying n-photon indistinguishability with a cyclic integrated interferometer” (2022)
Mathias Pont, Riccardo Albiero, Sarah E Thomas, Nicolò Spagnolo, Francesco Ceccarelli, Giacomo Corrielli, Alexandre Brieussel, Niccolo Somaschi, Hêlio Huet, Abdelmounaim Harouri, Aristide Lemaître, Isabelle Sagnes, Nadia Belabas, Fabio Sciarrino, Roberto Osellame, Pascale Senellart, and Andrea Crespi · 2022
Closest in time.
“High-speed programmable photonic circuits in a cryogenically compatible, visible–near-infrared 200 mm CMOS architecture”
Mark Dong, Genevieve Clark, Andrew J. Leenheer, Matthew Zimmermann, Daniel Dominguez, Adrian J. Menssen, David Heim, Gerald Gilbert, Dirk Englund, and Matt Eichenfield · 2022
Closest in time.