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Efficient reconciliation with rate adaptive codes in quantum key distribution.

机译:量子密钥分配中与速率自适应代码的高效协调。

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摘要

Quantum key distribution (QKD) relies on quantum and classical procedures in order to achieve the growing of a secret random string ¿the key¿ known only to the two parties executing the protocol. Limited intrinsic efficiency of the protocol, imperfect devices and eavesdropping produce errors and information leakage from which the set of measured signals ¿the raw key¿ must be stripped in order to distill a final, information theoretically secure, key. The key distillation process is a classical one in which basis reconciliation, error correction and privacy amplification protocols are applied to the raw key. This cleaning process is known as information reconciliation and must be done in a fast and efficient way to avoid cramping the performance of the QKD system. Brassard and Salvail proposed a very simple and elegant protocol to reconcile keys in the secret- key agreement context, known as Cascade, that has become the de-facto standard for all QKD practical implementations. However, it is highly interactive, requiring many com- munications between the legitimate parties and its efficiency is not optimal, imposing an early limit to the maximum tolerable error rate. In this paper we describe a low-density parity-check reconciliation protocol that improves significantly on these problems. The protocol exhibits better efficiency and limits the number of uses of the communications channel. It is also able to adapt to different error rates while remaining efficient, thus reaching longer distances or higher secure key rate for a given QKD system.
机译:量子密钥分发(QKD)依赖于量子和经典过程,以实现秘密随机字符串(密钥)的增长,密钥只有执行协议的双方才知道。协议有限的固有效率,不完善的设备和窃听会产生错误和信息泄漏,必须从中剥离一组测量信号“原始密钥”,才能提取出理论上安全的最终密钥。密钥蒸馏过程是一种经典的过程,其中基础和解,纠错和隐私放大协议被应用于原始密钥。此清理过程称为信息对账,并且必须以快速有效的方式进行,以免影响QKD系统的性能。 Brassard和Salvail提出了一个非常简单而优雅的协议,用于在秘密密钥协议上下文中调和密钥,称为Cascade,该协议已成为所有QKD实际实现的实际标准。但是,它是高度交互的,需要合法方之间进行许多通信,并且效率不是最佳的,这对最大可容忍错误率施加了早期限制。在本文中,我们描述了一种低密度奇偶校验和解协议,该协议在这些问题上有显着改进。该协议具有更好的效率,并限制了通信信道的使用数量。它还能够适应不同的错误率,同时保持效率,从而对于给定的QKD系统达到更长的距离或更高的安全密钥率。

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  • 作者

    Elkouss Coronas David;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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