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Efficient multiparty quantum private comparison protocol based on single photons and rotation encryption

  • 01-07-2023
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Abstract

The article introduces an efficient multiparty quantum private comparison (MQPC) protocol based on single photons and rotation encryption. This protocol addresses the security vulnerabilities of classical cryptography in the era of quantum computing. By using single photons as quantum information carriers and rotation encryption, the proposed protocol achieves higher qubit efficiency and practicality compared to existing MQPC protocols. The protocol encodes private inputs into rotation angles, which are then used to convert the received single photon sequence into an unknown quantum state sequence. This sequence is sent back to a semi-honest third party in a closed-loop transfer mode, significantly improving efficiency. The article also includes a simulation on IBM Quantum Experience to demonstrate the feasibility of the protocol and a comprehensive security analysis to show its resistance to both outsider and insider attacks. The protocol only requires single photons and rotation operations, making it more feasible for implementation under current technical conditions. The article concludes by highlighting the potential for future developments in practical and efficient MQPC protocols.

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Title
Efficient multiparty quantum private comparison protocol based on single photons and rotation encryption
Authors
Xi Huang
Wen-Fang Zhang
Shi-Bin Zhang
Publication date
01-07-2023
Publisher
Springer US
Published in
Quantum Information Processing / Issue 7/2023
Print ISSN: 1570-0755
Electronic ISSN: 1573-1332
DOI
https://doi.org/10.1007/s11128-023-04027-9
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