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Quantum Cryptography II: How to re-use a one-time pad safely even if P=NP

机译:量子密码学II:即使P = NP如何安全地重复使用一次性垫

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摘要

When elementary quantum systems, such as polarized photons, are used to transmit digital information, the uncertainty principle gives rise to novel cryptographic phenomena unachievable with traditional transmission media, e.g. a communications channel on which it is impossible in principle to eavesdrop without a high probability of being detected. With such a channel, a one-time pad can safely be reused many times as long as no eavesdrop is detected, and, planning ahead, part of the capacity of these uncompromised transmissions can be used to send fresh random bits with which to replace the one-time pad when an eavesdrop finally is detected. Unlike other schemes for stretching a one-time pad, this scheme does not depend on complexity-theoretic assumptions such as the difficulty of factoring.
机译:当诸如偏振光子之类的基本量子系统用于传输数字信息时,不确定性原理引起了传统的传输介质(例如光传输)无法实现的新型密码现象。一个原则上不可能被高概率侦听的通信信道。借助这样的信道,只要没有检测到窃听,一次性垫就可以安全地重复使用多次,并且,提前计划,这些不妥协的传输的部分容量可以用来发送新的随机比特,以代替最终检测到窃听时的一次性垫。与其他用于扩展一次性垫的方案不同,该方案不依赖于复杂性理论的假设,例如分解的难度。

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