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A Quantum-Proof Non-malleable Extractor With Application to Privacy Amplification Against Active Quantum Adversaries

机译:防量子不可萃取提取器及其在针对主动量子对手的隐私放大中的应用

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In privacy amplification, two mutually trusted parties aim to amplify the secrecy of an initial shared secret X in order to establish a shared private key K by exchanging messages over an insecure communication channel. If the channel is authenticated the task can be solved in a single round of communication using a strong randomness extractor; choosing a quantum-proof extractor allows one to establish security against quantum adversaries. In the ease that the channel is not authenticated, this simple solution is no longer secure. Nevertheless, Dodis and Wichs (STOC'09) showed that the problem can be solved in two rounds of communication using a non-malleable extractor, a stronger pseudo-random construction than a strong extractor. We give the first construction of a non-malleable extractor that is secure against quantum adversaries. The extractor is based on a construction by Li (FOCS'12), and is able to extract from source of min-entropy rates larger than 1 /2. Combining this construction with a quantum-proof variant of the reduction of Dodis and Wichs, due to Cohen and Vidiek (unpublished) we obtain the first privacy amplification protocol secure against active quantum adversaries.
机译:在隐私放大中,两个相互信任的各方旨在放大初始共享机密X的保密性,以便通过在不安全的通信信道上交换消息来建立共享私钥K。如果通道已通过身份验证,则可以使用强大的随机性提取器在单轮通信中解决任务;选择一种防量子提取器可以建立针对量子对手的安全性。为了不对通道进行身份验证,此简单的解决方案不再安全。不过,Dodis和Wichs(STOC'09)指出,使用不可恶意提取器,可以通过两轮通讯解决该问题,这是一种比强大提取器更强的伪随机构造。我们给出了一种非恶意提取器的第一个结构,该提取器可抵抗量子对手。提取器基于Li(FOCS'12)的构造,并且能够从最小熵率大于1/2的源中提取。由于Cohen和Vidiek(未发布)的存在,将这种结构与Dodis和Wichs减少的防量子变体相结合(未发表),我们获得了针对主动量子对手的第一个安全保密协议。

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