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Classical Proofs for the Quantum Collapsing Property of Classical Hash Functions

机译:经典哈希函数的量子崩溃性质的经典证明

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Hash functions are of fundamental importance in theoretical and in practical cryptography, and with the threat of quantum computers possibly emerging in the future, it is an urgent objective to understand the security of hash functions in the light of potential future quantum attacks. To this end, we reconsider the collapsing property of hash functions, as introduced by Unruh, which replaces the notion of collision resistance when considering quantum attacks. Our contribution is a formalism and a framework that offers significantly simpler proofs for the collapsing property of hash functions. With our framework, we can prove the collapsing property for hash domain extension constructions entirely by means of decomposing the iteration function into suitable elementary composition operations. In particular, given our framework, one can argue purely classically about the quantum-security of hash functions; this is in contrast to previous proofs which are in terms of sophisticated quantum-information-theoretic and quantum-algorithmic reasoning.
机译:散列函数在理论和实践密码学中都具有根本的重要性,并且随着未来可能出现量子计算机的威胁,鉴于潜在的未来量子攻击,了解散列函数的安全性是一个紧迫的目标。为此,我们重新考虑了Unruh引入的哈希函数的崩溃特性,该特性取代了考虑量子攻击时的抗碰撞性。我们的贡献是形式主义和框架,为哈希函数的崩溃特性提供了更为简单的证明。利用我们的框架,我们可以通过将迭代函数分解为合适的基本合成运算,来完全证明哈希域扩展结构的崩溃特性。特别是在给定我们的框架的情况下,人们可以对哈希函数的量子安全性进行纯粹的经典论证。这与以前的证明(在复杂的量子信息理论和量子算法推理方面)形成对比。

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