限制-验证器精确-有界-并发零知识

Ning Ding, Dawu Gu
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引用次数: 0

摘要

我们提出了一个更强的精确有界并发零知识的概念。我们的概念抓住了这样一种思想,即在有界并发交互中,任何验证者的视图都可以在几乎相同的时间内重构。Micali和Pass在STOC'06中引入了单机环境下的精确零知识,他们用至少(1)轮构造了NP的精确单机零知识协议。通过对已知的O(1)轮有界并发非黑箱零知识参数的精确模拟,证明了NP具有多项式精度的O(1)轮有界并发零知识参数的存在性。我们的结果假设,在协议的有界并发执行中,任何两个不同视图上的任何对抗式验证器的运行时间比率由na限定,其中a是任何预定常数。这样的验证器称为受限验证器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Restricted-Verifier Precise Bounded-Concurrent Zero-Knowledge
We present a stronger notion of precise bounded-concurrent zero-knowledge. Our notion captures the idea that view of any verifier in a bounded-concurrent interaction can be reconstructed in the almost same time. Precise zero-knowledge in stand-alone setting was introduced by Micali and Pass in STOC'06 and they constructed some precise stand-alone zero-knowledge protocols for NP using at least omega(1) rounds. Via providing a precise simulator for the known O(1)-round bounded-concurrent non-black-box zero-knowledge argument, we show the existence of O(1)- round bounded-concurrent zero-knowledge arguments with polynomial precision for NP. Our result assumes that the ratio of running-time of any adversarial verifier on any two different views in bounded-concurrent execution of the protocol is bounded by na, where a is any predeterminate constant. Such verifiers are called restricted verifiers.
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