most citedEfficient Quantum Digital Signatures without Symmetrization Step

55 citations · 188 across the 6 of their papers we have counts for

collaborators

10 papers

math.OC2021

Algebraic Analysis of Electric Load and Electricity Pricing

Jinghuan Ma, Jie Gu, Zhijian Jin

This paper presents a perspective of functional analysis to analyze electric load and electricity pricing in the space and its isomorphic vector space, which also yields the…

quant-ph202131 cited

Finite-key Analysis for Quantum Conference Key Agreement with Asymmetric Channels

Zhao Li, Xiao-Yu Cao, Chen-Long Li +4

As an essential ingredient of quantum networks, quantum conference key agreement (QCKA) provides unconditional secret keys among multiple parties, which enables only legitimate use…

quant-ph202136 cited

Coherent one-way quantum conference key agreement based on twin field

Xiao-Yu Cao, Jie Gu, Yu-Shuo Lu +2

Quantum conference key agreement (CKA) enables key sharing among multiple trusted users with information-theoretic security. Currently, the key rates of most quantum CKA protocols…

quant-ph202113 cited

Differential Phase Shift Quantum Secret Sharing Using a Twin Field with Asymmetric Source Intensities

Zhao-Ying Jia, Jie Gu, Bing-Hong Li +2

As an essential application of quantum mechanics in classical cryptography, quantum secret sharing has become an indispensable component of quantum internet. Recently, a differenti…

quant-ph202153 cited

Differential phase shift quantum secret sharing using twin field

Jie Gu, Xiao-Yu Cao, Hua-Lei Yin +1

Quantum secret sharing (QSS) is essential for multiparty quantum communication, which is one of cornerstones in the future quantum internet. However, a linear rate-distance limitat…

quant-ph202155 cited

Efficient Quantum Digital Signatures without Symmetrization Step

Yu-Shuo Lu, Xiao-Yu Cao, Chen-Xun Weng +5

Quantum digital signatures (QDS) exploit quantum laws to guarantee non-repudiation, unforgeability and transferability of messages with information-theoretic security. Current QDS…