Efficient Quantum Private Comparison Based on GHZ States

Author:

Hou Min12ORCID,Wu Yue1,Zhang Shibin34ORCID

Affiliation:

1. School of Computer Science, Sichuan University Jinjiang College, Meishan 620860, China

2. Network and Data Security Key Laboratory of Sichuan Province, University of Electronic Science and Technology of China, Chengdu 610054, China

3. School of Cybersecurity, Chengdu University of Information Technology, Chengdu 610225, China

4. Advanced Cryptography and System Security Key Laboratory of Sichuan Province, Chendu 610225, China

Abstract

Quantum private comparison (QPC) is a fundamental cryptographic protocol that allows two parties to compare the equality of their private inputs without revealing any information about those inputs to each other. In recent years, QPC protocols utilizing various quantum resources have been proposed. However, these QPC protocols have lower utilization of quantum resources and qubit efficiency. To address this issue, we propose an efficient QPC protocol based on GHZ states, which leverages the unique properties of GHZ states and rotation operations to achieve secure and efficient private comparison. The secret information is encoded in the rotation angles of rotation operations performed on the received quantum sequence transmitted along the circular mode. This results in the multiplexing of quantum resources and enhances the utilization of quantum resources. Our protocol does not require quantum key distribution (QKD) for sharing a secret key to ensure the security of the inputs, resulting in no consumption of quantum resources for key sharing. One GHZ state can be compared to three bits of classical information in each comparison, leading to qubit efficiency reaching 100%. Compared with the existing QPC protocol, our protocol does not require quantum resources for sharing a secret key. It also demonstrates enhanced performance in qubit efficiency and the utilization of quantum resources.

Funder

National Natural Science Foundation of China

the National Key Research and Development Plan of China, Key Project of Cyberspace Security Governance

Key Research and Development Project of Chengdu

Key Research and Development Project of Sichuan Province

Open Fund of Network and Data Security Key Laboratory of Sichuan Province

Gongga Plan for the “Double World-class Project”

Publisher

MDPI AG

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