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Key Reconciliation for High Performance Quantum Key Distribution

机译:高性能量子密钥分配的密钥协调

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摘要

Quantum Key Distribution is carving its place among the tools used to secure communications. While a difficult technology, it enjoys benefits that set it apart from the rest, the most prominent is its provable security based on the laws of physics. QKD requires not only the mastering of signals at the quantum level, but also a classical processing to extract a secret-key from them. This postprocessing has been customarily studied in terms of the efficiency, a figure of merit that offers a biased view of the performance of real devices. Here we argue that it is the throughput the significant magnitude in practical QKD, specially in the case of high speed devices, where the differences are more marked, and give some examples contrasting the usual postprocessing schemes with new ones from modern coding theory. A good understanding of its implications is very important for the design of modern QKD devices.
机译:昆腾密钥分发正在巩固其用于保护通信的工具中的地位。尽管这是一项困难的技术,但它享有与众不同的优势,最突出的是基于物理定律可证明的安全性。 QKD不仅需要掌握量子级的信号,而且还需要经典的处理过程以从中提取密钥。通常根据效率来研究这种后处理,效率是一个品质因数,它提供了对真实设备性能的偏见。在这里,我们认为实际QKD中的吞吐量是相当大的,特别是在高速设备的情况下,其差异更加明显,并给出了一些示例,这些示例将常规后处理方案与现代编码理论中的新方案进行了对比。充分了解其含义对于现代QKD设备的设计非常重要。

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