Secure and efficient quantum signature scheme based on the controlled unitary operations encryption

IF 2.2 3区 物理与天体物理 Q1 PHYSICS, MATHEMATICAL
Debnath Ghosh, Soumit Roy, Prithwi Bagchi, Indranil Chakrabarty, Ashok Kumar Das
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引用次数: 0

Abstract

Quantum digital signatures ensure unforgeable message authenticity and integrity using quantum principles, offering unconditional security against both classical and quantum attacks. They are crucial for secure communication in high-stakes environments, ensuring trust and long-term protection in the quantum era. Nowadays, the majority of arbitrated quantum signature (AQS) protocols encrypt data qubit by qubit using the quantum one-time pad (QOTP). Despite providing robust data encryption, QOTP is not a good fit for AQS because of its susceptibility to many types of attacks. In this work, we present an efficient AQS protocol to encrypt quantum message ensembles using a distinct encryption technique, the chained controlled unitary operations. In contrast with existing protocols, our approach successfully prevents disavowal and forgery attacks. We hope this contributes to advancing future investigations into the development of AQS protocols .

基于受控酉运算加密的安全高效量子签名方案
量子数字签名利用量子原理确保不可伪造的消息真实性和完整性,提供针对经典攻击和量子攻击的无条件安全性。它们对于高风险环境中的安全通信至关重要,可以确保量子时代的信任和长期保护。目前,大多数仲裁量子签名(AQS)协议使用量子一次性键盘(QOTP)逐个量子比特对数据进行加密。尽管提供了健壮的数据加密,但QOTP并不适合AQS,因为它容易受到许多类型的攻击。在这项工作中,我们提出了一种有效的AQS协议,使用一种独特的加密技术,即链式控制的单一操作来加密量子消息集合。与现有协议相比,我们的方法成功地防止了拒绝和伪造攻击。我们希望这有助于推进未来对AQS协议发展的研究。
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来源期刊
Quantum Information Processing
Quantum Information Processing 物理-物理:数学物理
CiteScore
4.10
自引率
20.00%
发文量
337
审稿时长
4.5 months
期刊介绍: Quantum Information Processing is a high-impact, international journal publishing cutting-edge experimental and theoretical research in all areas of Quantum Information Science. Topics of interest include quantum cryptography and communications, entanglement and discord, quantum algorithms, quantum error correction and fault tolerance, quantum computer science, quantum imaging and sensing, and experimental platforms for quantum information. Quantum Information Processing supports and inspires research by providing a comprehensive peer review process, and broadcasting high quality results in a range of formats. These include original papers, letters, broadly focused perspectives, comprehensive review articles, book reviews, and special topical issues. The journal is particularly interested in papers detailing and demonstrating quantum information protocols for cryptography, communications, computation, and sensing.
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