Category
Position
Email
tychen@happyjiayi.com
Address
Room B1013-2, Physical Science Park, University of Science & Technology of China, 96 Jin Zhai Rd., Hefei
Introduction
Dr. Teng-Yun Chen was born in Fujian Province, February, 1978. He obtained the bachelor's and doctor's degree in 2001 and 2006, respectively, both in University of Science and Technology of China. He is now an associate researcher of USTC. He is devoted to the study of the optical fiber based quantum communication with quantum cryptography system and network.Until now, he has published many papers on the high-profile journals, including 9 Physical Review Letters, and 1 Physical Review X. His research work have been selected once as the "China's top ten science and technology news" by academicians of the Chinese Academy of Sciences and Chinese Academy of Engineering and "Highlights of the Year" by American Physical Society.
Related News
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Related Publications
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Measurement-Device-Independent Quantum Key Distribution over Untrustful Metropolitan Network. Physical Review X 6, 011024 (2016).
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Observation of Quantum Fingerprinting Beating the Classical Limit. Physical Review Letters 116, 240502 (2016).
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Quantum teleportation with independent sources and prior entanglement distribution over a network. Nature Photonics 10, 671-675 (2016).
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Field Test of Measurement-Device-Independent Quantum Key Distribution. IEEE Journal of Selected Topics in Quantum Electronics 21, 116-122 (2015).
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Long-Distance Measurement-Device-Independent Multiparty Quantum Communication. Physical Review Letters 114, 090501 (2015).
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Experimental multiplexing of quantum key distribution with classical optical communication. Applied Physics Letters 106, 081108 (2015).
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Measurement-Device-Independent Quantum Key Distribution over 200 km. Physical Review Letters 113, 190501 (2014).
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Experimental Unconditionally Secure Bit Commitment. Physical Review Letters 112, 010504 (2014).
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Experimental Measurement-Device-Independent Quantum Key Distribution. Physical Review Letters 111, 130502 (2013).
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Source attack of decoy-state quantum key distribution using phase information. Physical Review A 88, 022308 (2013).