Definitions and Security of Quantum Electronic Voting

Myrto Arapinis, N. Lamprou, Elham Kashefi, Anna Pappa
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引用次数: 8

Abstract

Recent advances indicate that quantum computers will soon be reality. Motivated by this ever more realistic threat for existing classical cryptographic protocols, researchers have developed several schemes to resist “quantum attacks.” In particular, for electronic voting (e-voting), several schemes relying on properties of quantum mechanics have been proposed. However, each of these proposals comes with a different and often not well-articulated corruption model, has different objectives, and is accompanied by security claims that are never formalized and are at best justified only against specific attacks. To address this, we propose the first formal security definitions for quantum e-voting protocols. With these at hand, we systematize and evaluate the security of previously proposed quantum e-voting protocols; we examine the claims of these works concerning privacy, correctness, and verifiability, and if they are correctly attributed to the proposed protocols. In all non-trivial cases, we identify specific quantum attacks that violate these properties. We argue that the cause of these failures lies in the absence of formal security models and references to the existing cryptographic literature.
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量子电子投票的定义和安全性
最近的进展表明,量子计算机将很快成为现实。由于这种对现有经典加密协议的日益现实的威胁,研究人员开发了几种抵抗“量子攻击”的方案。特别是对于电子投票(e-voting),已经提出了几种依赖于量子力学性质的方案。然而,这些建议中的每一个都有一个不同的,通常不是很清楚的腐败模型,有不同的目标,并且伴随着从未形式化的安全声明,充其量只能针对特定的攻击进行证明。为了解决这个问题,我们提出了量子电子投票协议的第一个正式安全定义。有了这些,我们对之前提出的量子电子投票协议的安全性进行了系统化和评估;我们检查了这些作品关于隐私、正确性和可验证性的声明,以及它们是否正确地归因于所提议的协议。在所有非平凡的情况下,我们确定了违反这些属性的特定量子攻击。我们认为,这些失败的原因在于缺乏正式的安全模型和参考现有的密码学文献。
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