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Unconditionally Secure Quantum Signatures

机译:无条件安全的量子签名

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Signature schemes, proposed in 1976 by Diffie and Hellman, have become ubiquitous across modern communications. They allow for the exchange of messages from one sender to multiple recipients, with the guarantees that messages cannot be forged or tampered with and that messages also can be forwarded from one recipient to another without compromising their validity. Signatures are different from, but no less important than encryption, which ensures the privacy of a message. Commonly used signature protocols—signatures based on the Rivest–Adleman–Shamir (RSA) algorithm, the digital signature algorithm (DSA), and the elliptic curve digital signature algorithm (ECDSA)—are only computationally secure, similar to public key encryption methods. In fact, since these rely on the difficulty of finding discrete logarithms or factoring large primes, it is known that they will become completely insecure with the emergence of quantum computers. We may therefore see a shift towards signature protocols that will remain secure even in a post-quantum world. Ideally, such schemes would provide unconditional or information-theoretic security. In this paper, we aim to provide an accessible and comprehensive review of existing unconditionally securesecure signature schemes for signing classical messages, with a focus on unconditionally secure quantum signature schemes.
机译:Diffie和Hellman于1976年提出的签名方案已在现代通信中无处不在。它们允许将消息从一个发送者交换到多个接收者,并保证消息不会被伪造或篡改,并且还可以在不影响其有效性的情况下将消息从一个接收者转发到另一个接收者。签名与加密不同,但同等重要,它可以确保消息的私密性。常用的签名协议(基于Rivest-Adleman-Shamir(RSA)算法,数字签名算法(DSA)和椭圆曲线数字签名算法(ECDSA)的签名)在计算上仅是安全的,类似于公钥加密方法。实际上,由于这些方法依赖于查找离散对数或分解大质数的困难,因此众所周知,随着量子计算机的出现,它们将变得完全不安全。因此,我们可能会看到向签名协议的转变,即使在后量子世界中,签名协议也将保持安全。理想情况下,此类方案将提供无条件或信息理论上的安全性。在本文中,我们旨在为现有的用于签署经典消息的无条件安全安全签名方案提供可访问且全面的综述,重点是无条件安全量子签名方案。

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