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Photonics has been a promising platform for implementing quantum technologies owing to its scalability and robustness.
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J. Wang, S. Paesani, Y. Ding, R. Santagati, P. Skrzypczyk, A. Salavrakos, J. Tura, R. Augusiak, L. Mančinska, D. Bacco, D. Bonneau, J. W. Silverstone, Q. Gong, A. Acín, K. Rottwitt, L. K. Oxenløwe, J. L. O’Brien, A. Laing, and M. G. Thompson, “Multidimensional quantum entanglement with large-scale integrated optics,” Science 360
2012
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P. C. Humphreys, B. J. Metcalf, J. B. Spring, M. Moore, X.-M. Jin, M. Barbieri, W. S. Kolthammer, and I. A. Walmsley, “Linear optical quantum computing in a single spatial mode,” Phys. Rev. Lett. 111
2013
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K. R. Motes, A. Gilchrist, J. P. Dowling, and P. P. Rohde, “Scalable boson sampling with time-bin encoding using a loop-based architecture,” Phys. Rev. Lett. 113
2014
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2017
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K. H. Kagalwala, G. Di Giuseppe, A. F. Abouraddy, and B. E. A. Saleh, “Single-photon three-qubit quantum logic using spatial light modulators,” Nat. Commun. 8
2017
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Y. He, X. Ding, Z.-E. Su, H.-L. Huang, J. Qin, C. Wang, S. Unsleber, C. Chen, H. Wang, Y.-M. He, X.-L. Wang, W.-J. Zhang, S.-J. Chen, C. Schneider, M. Kamp, L.-X. You, Z. Wang, S. Höfling, C.-Y. Lu, and J.-W. Pan, “Time-bin-encoded boson sampling with a single-photon device,” Phys. Rev. Lett. 118
2017
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C.-H. Wu, T.-Y. Wu, Y.-C. Yeh, P.-H. Liu, C.-H. Chang, C.-K. Liu, T. Cheng, and C.-S. Chuu, “Bright single photons for light-matter interaction,” Phys. Rev. A 96
2017
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2019
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D. Cozzolino, B. Da Lio, D. Bacco, and L. K. Oxenløwe, “High-dimensional quantum communication: Benefits, progress, and future challenges,” Adv. Quantum Technol. 2
2019
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C.-H. Wu, C.-K. Liu, Y.-C. Chen, , and C.-S. Chuu, “Revival of quantum interference by modulating the biphotons,” Phys. Rev. Lett. 123
2019
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X. Gao, M. Erhard, A. Zeilinger, and M. Krenn, “Computer-inspired concept for high-dimensional multipartite quantum gates,” Phys. Rev. Lett. 125
2020
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Y. Wang, Z. Hu, B. C. Sanders, and S. Kais, “Qudits and high-dimensional quantum computing,” Front. Phys. 8
2020
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M. Erhard, M. Krenn, and A. Zeilinger, “Advances in high-dimensional quantum entanglement,” Nat. Rev. Phys. 2
2020
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J. Kysela, X. Gao, and B. Dakić, “Fourier transform of the orbital angular momentum of a single photon,” Phys. Rev. Applied 14
2020
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R. Chinnarasu, C.-Y. Liu, Y.-F. Ding, C.-Y. Lee, T.-H. Hsieh, I. A. Yu, and C.-S. Chuu, “Efficient generation of subnatural-linewidth biphotons by controlled quantum interference,” Phys. Rev. A 101
2020
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C.-Y. Cheng, J.-H. Yang, Y.-J. Chen, C.-H. Wu, C.-N. Wang, and C.-S. Chuu, “Time-resolved detection of photon-surface-plasmon coupling at the single-quanta level,” Phys. Rev. A 102
2020
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M. Rambach, M. Qaryan, M. Kewming, C. Ferrie, A. G. White, and J. Romero, “Robust and efficient high-dimensional quantum state tomography,” Phys. Rev. Lett. 126
2021
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C.-S. Chuu, C.-Y. Cheng, C.-H. Wu, C.-Y. Wei, S.-Y. Huang, S.-W. Feng, Y.-J. Chen, and C.-Y. Yang, “Purification of single and entangled photons by wavepacket shaping,” Adv. Quantum Technol. 4
2021
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Y. Wang, K. D. Jöns, and Z. Sun, “Integrated photon-pair sources with nonlinear optics,” Appl. Phys. Rev. 8
2021
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Y. Chi, J. Huang, Z. Zhang, J. Mao, Z. Zhou, X. Chen, C. Zhai, J. Bao, T. Dai, H. Yuan, M. Zhang, D. Dai, Bo Tang, Y. Yang, Z. Li, Y. Ding, L. K. Oxenløwe, M. G. Thompson, J. L. O’Brien, Y. Li, Q. Gong, and J. Wang, “A programmable qudit-based quantum processor,” Nat. Comm. 13
2022
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Y.-C. Kao, S.-H. Huang, C.-H. Chang, C.-H. Wu, S.-H. Chu, J. Jiang, A.-C. Zhang, S.-Y. Huang, J.-H. Yen, K.-M. Feng, and C.-S. Chuu, “Field test of quantum key distribution with high key creation efficiency,” Opt. Express 31
2023
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