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Efficient quantum private comparison protocol based on one direction discrete quantum walks on the circle

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【作者】 王莒杰窦钊陈秀波赖裕平李剑

【Author】 Jv-Jie Wang;Zhao Dou;Xiu-Bo Chen;Yu-Ping Lai;Jian Li;Information Security Center, State Key Laboratory of Networking and Switching Technology,Beijing University of Posts and Telecommunications;Information Security Center, School of Cyberspace Security, Beijing University of Posts and Telecommunications;

【通讯作者】 窦钊;

【机构】 Information Security Center, State Key Laboratory of Networking and Switching Technology,Beijing University of Posts and TelecommunicationsInformation Security Center, School of Cyberspace Security, Beijing University of Posts and Telecommunications

【摘要】 We propose an efficient quantum private comparison protocol firstly based on one direction quantum walks. With the help of one direction quantum walk, we develop a novel method that allows the semi-honest third party to set a flag to judge the comparing result, which improves the qubit efficiency and the maximum quantity of the participants’ secret messages.Besides, our protocol can judge the size of the secret messages, not only equality. Furthermore, the quantum walks particle is disentangled in the initial state. It only requires a quantum walks operator to move, making our proposed protocol easy to implement and reducing the quantum resources. Through security analysis, we prove that our protocol can withstand well-known attacks and brute-force attacks. Analyses also reveal that our protocol is correct and practical.

【Abstract】 We propose an efficient quantum private comparison protocol firstly based on one direction quantum walks. With the help of one direction quantum walk, we develop a novel method that allows the semi-honest third party to set a flag to judge the comparing result, which improves the qubit efficiency and the maximum quantity of the participants’ secret messages.Besides, our protocol can judge the size of the secret messages, not only equality. Furthermore, the quantum walks particle is disentangled in the initial state. It only requires a quantum walks operator to move, making our proposed protocol easy to implement and reducing the quantum resources. Through security analysis, we prove that our protocol can withstand well-known attacks and brute-force attacks. Analyses also reveal that our protocol is correct and practical.

【基金】 Project supported by the National Key R&D Program of China (Grant No. 2020YFB1805405);the 111 Project (Grant No. B21049);the Foundation of Guizhou Provincial Key Laboratory of Public Big Data (Grant No. 2019BDKFJJ014);the Fundamental Research Funds for the Central Universities,China (Grant No. 2020RC38)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年05期
  • 【分类号】O413
  • 【下载频次】13
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