Two quantum private query protocols based on Bell states and single photons

Author:

Liu Dong-Mei1ORCID,Yan Li-Li1,Chang Yan1,Zhang Shi-Bin1,Cao Tian1

Affiliation:

1. School of Cybersecurity, Chengdu University of Information Technology, Sichuan 610000, China

Abstract

This paper proposes two quantum privacy query protocols. In the single vector sub-privacy query of protocol 1, it is proposed for the first time to distinguish different measurement results by publishing 2 bits of classic information. In the protocol, the database Bob selects the Z base and the Bell base to measure the particles sent by Alice according to the key value of the encrypted database and publishes 2 bits of classic information based on the measurement results. The user Alice infers the key value of the encrypted database through these two pieces of classic information. In the two-way quantum privacy query of protocol 2, the database Bob measures the particles sent back by Alice, converts the measurement result into a key value of length 3, and prepares a particle that is the same as the measurement result and sends it back to Alice. Alice returns the measurement of particles can infer a set of data encryption keys, and the length of each key is 3 bits. Users in the two protocols proposed in the article can obtain the query key with a probability of 1/4. As the key length increases, the number of query bits in protocol 2 decreases, but the probability of execution failure increases. But protocol 2 has a higher quantum efficiency. Both protocols can guarantee the privacy of users and databases.

Funder

NSFC

Sichuan Science and Technology Program

The National Key Research and Development Program

Sichuan Innovation Team of Quantum Security Communication

Sichuan Academic and Technical Leaders Training Funding Support Projects

Publisher

World Scientific Pub Co Pte Lt

Subject

General Physics and Astronomy,Astronomy and Astrophysics,Nuclear and High Energy Physics

Cited by 5 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Bit leakage-resistant quantum private magnitude comparison;Modern Physics Letters A;2023-10-10

2. Enhanced quantum private comparison;Quantum Information Processing;2023-08-16

3. Quantum Private Magnitude Comparison Based on Maximum Operation;International Journal of Theoretical Physics;2022-12-17

4. Quantum Private Magnitude Comparison;International Journal of Theoretical Physics;2022-04

5. Quantum secure direct communication based on quantum homomorphic encryption;Modern Physics Letters A;2021-12-07

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