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Arbitration quantum signature protocol based on XOR encryption

机译:基于XOR加密的仲裁量子签名协议

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摘要

Quantum signature is a branch of quantum cryptography that draws on the design ideas of classic digital signatures, and uses the basic principles of quantum mechanics to achieve the integrity, authenticity and nonrepudiation of quantum information. Among them, arbitration quantum signature (AQS) plays a very important role. In this paper, we proposed an AQS protocol based on XOR encryption. Unlike other protocols, a quantum one-time pad encryption method or chain-type CNOT encryption method is abandoned. The proposed protocol is designed based on the three-particle GHZ state combined with the idea of classical XOR encryption, with CNOT operations used to encrypt quantum messages and quantum signatures. A security analysis of the proposed protocol reveals that the proposed protocol can satisfy the AQS requirements of unforgeability and nonrepudiation.
机译:量子签名是量子密码术的分支,其借鉴了经典数字签名的设计思想,并使用量子力学的基本原理来实现量子信息的完整性,真实性和非研究。 其中,仲裁量子签名(AQS)起着非常重要的作用。 在本文中,我们提出了一种基于XOR加密的AQS协议。 与其他协议不同,放弃了量子一时焊盘加密方法或链式CNOT加密方法。 所提出的协议是基于三个粒子GHz状态而结合经典XOR加密的想法,用于加密量子消息和量子签名的CNOT操作。 拟议议定书的安全分析表明,拟议的议定书可以满足不可识别的AQS要求。

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