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Error tolerance of two-basis quantum-key-distribution protocols using qudits and two-way classical communication

机译:使用基数和双向经典通信的两基量子密钥分发协议的容错性

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摘要

We investigate the error tolerance of quantum cryptographic protocols using d-level systems. In particular, we focus on prepare-and-measure schemes that use two mutually unbiased bases and a key-distillation procedure with two-way classical communication. For arbitrary quantum channels, we obtain a sufficient condition for secret-key distillation which, in the case of isotropic quantum channels, yields an analytic expression for the maximally tolerable error rate of the cryptographic protocols under consideration. The difference between the tolerable error rate and its theoretical upper bound tends slowly to zero for sufficiently large dimensions of the information carriers.
机译:我们研究了使用d级系统的量子密码协议的容错性。尤其是,我们专注于使用两个互不偏基的准备和测量方案以及带有双向经典通信的密钥蒸馏过程。对于任意量子通道,我们获得了密钥蒸馏的充分条件,在各向同性量子通道的情况下,该条件可以为所考虑的密码协议的最大容许错误率提供解析表达式。对于足够大的信息载体尺寸,可容忍的错误率与其理论上限之间的差异趋于缓慢趋于零。

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