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20142024
most citedBreaking the Rate-Loss Bound of Quantum Key Distribution with Asynchronous Two-Photon Interference

287 citations · 672 across the 8 of their papers we have counts for

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8 papers · 1 filter

quant-ph202413 cited

Source-independent quantum secret sharing with entangled photon pair networks

Yi-Ran Xiao, Zhao-Ying Jia, Yu-Chen Song +4

The large-scale deployment of quantum secret sharing (QSS) in quantum networks is currently challenging due to the requirements for the generation and distribution of multipartite…

quant-ph202389 cited

Experimental quantum secret sharing based on phase encoding of coherent states

Ao Shen, Xiao-Yu Cao, Yang Wang +6

Quantum secret sharing (QSS) is one of the basic communication primitives in future quantum networks which addresses part of the basic cryptographic tasks of multiparty communicati…

quant-ph2021287 cited

Breaking the Rate-Loss Bound of Quantum Key Distribution with Asynchronous Two-Photon Interference

Yuan-Mei Xie, Yu-Shuo Lu, Chen-Xun Weng +7

Twin-field quantum key distribution can overcome the secret key capacity of repeaterless quantum key distribution via single-photon interference. However, to compensate for the cha…

quant-ph202146 cited

Experimental quantum advantage with quantum coupon collector

Min-Gang Zhou, Xiao-Yu Cao, Yu-Shuo Lu +6

An increasing number of communication and computational schemes with quantum advantages have recently been proposed, which implies that quantum technology has fertile application p…

quant-ph2014206 cited

Long-Distance Measurement-Device-Independent Multiparty Quantum Communication

Yao Fu, Hua-Lei Yin, Teng-Yun Chen +1

The Greenberger-Horne-Zeilinger (GHZ) entanglement, originally introduced to uncover the extreme violation of local realism against quantum mechanics, is an important resource for…

quant-ph201439 cited

Long distance measurement-device-independent quantum key distribution with coherent-state superpositions

Hua-Lei Yin, Wen-Fei Cao, Yao Fu +4

Measurement-device-independent quantum key distribution (MDI-QKD) with decoy-state method is believed to be securely applied to defeat various hacking attacks in practical quantum…