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Gaussian boson sampling is a model of photonic quantum computing that has attracted attention as a platform for building quantum devices capable of performing tasks that are out of reach for classical devices.
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William R Clements, Peter C Humphreys, Benjamin J Metcalf, W Steven Kolthammer, and Ian A Walsmley · 2016
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Scott Aaronson and Daniel J. Brod · 2016
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“High-efficiency multiphoton boson sampling”
Hui Wang, Yu He, Yu-Huai Li, Zu-En Su, Bo Li, He-Liang Huang, Xing Ding, Ming-Cheng Chen, Chang Liu, Jian Qin, Jin-Peng Li, Yu-Ming He, Christian Schneider, Martin Kamp, Cheng-Zhi Peng, Sven Höfling, Chao-Yang Lu, and Jian-Wei Pan · 2017
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Leonardo Banchi, Mark Fingerhuth, Tomas Babej, Christopher Ing, and Juan Miguel Arrazola · 2020
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“Point processes with Gaussian boson sampling”
Soran Jahangiri, Juan Miguel Arrazola, Nicolás Quesada, and Nathan Killoran · 2020
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Maria Schuld, Kamil Brádler, Robert Israel, Daiqin Su, and Brajesh Gupt · 2020
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Soran Jahangiri, Juan Miguel Arrazola, Nicolás Quesada, and Alain Delgado · 2020
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Leonardo Banchi, Nicolás Quesada, and Juan Miguel Arrazola · 2020
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“Quantum computational advantage using photons”
Han-Sen Zhong, Hui Wang, Yu-Hao Deng, Ming-Cheng Chen, Li-Chao Peng, Yi-Han Luo, Jian Qin, Dian Wu, Xing Ding, 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, Chao-Yang Lu, and Jian-Wei Pan · 2020
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“Regimes of classical simulability for noisy Gaussian boson sampling”
Haoyu Qi, Daniel J. Brod, Nicolás Quesada, and Raúl García-Patrón · 2020
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“Exact simulation of Gaussian boson sampling in polynomial space and exponential time”
Nicolás Quesada and Juan Miguel Arrazola · 2020
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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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“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, et al · 2021
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“Further compactifying linear optical unitaries”
Bryn A Bell and Ian A Walmsley · 2021
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“Quantum computational advantage with a programmable photonic processor”
Lars S. Madsen, Fabian Laudenbach, Mohsen Falamarzi. Askarani, Fabien Rortais, Trevor Vincent, Jacob F. F. Bulmer, Filippo M. Miatto, Leonhard Neuhaus, Lukas G. Helt, Matthew J. Collins, Adriana E. Lita, Thomas Gerrits, Sae Woo Nam, Varun D. Vaidya, Matteo Menotti, Ish Dhand, Zachary Vernon, Nicolás Quesada, and Jonathan Lavoie · 2022
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“Quantum computational advantage via high-dimensional Gaussian boson sampling”
Abhinav Deshpande, Arthur Mehta, Trevor Vincent, Nicolás Quesada, Marcel Hinsche, Marios Ioannou, Lars Madsen, Jonathan Lavoie, Haoyu Qi, Jens Eisert, Dominik Hangleiter, Bill Fefferman, and Ish Dhand · 2022
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“Quadratic speed-up for simulating Gaussian boson sampling”
Nicolás Quesada, Rachel S. Chadwick, Bryn A. Bell, Juan Miguel Arrazola, Trevor Vincent, Haoyu Qi, and Raúl García-Patrón · 2022
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“The boundary for quantum advantage in Gaussian boson sampling”
Jacob FF Bulmer, Bryn A Bell, Rachel S Chadwick, Alex E Jones, Diana Moise, Alessandro Rigazzi, Jan Thorbecke, Utz-Uwe Haus, Thomas Van Vaerenbergh, Raj B Patel, et al · 2022
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“Simulating complex networks in phase space: Gaussian boson sampling”
Peter D. Drummond, Bogdan Opanchuk, A. Dellios, and M. D. Reid · 2022
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