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Implementation and security analysis of practical quantum secure direct communication

机译:实用量子安全直接通信的实现与安全性分析

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Rapid development of supercomputers and the prospect of quantum computers are posing increasingly serious threats to the security of communication. Using the principles of quantum mechanics, quantum communication offers provable security of communication and is a promising solution to counter such threats. Quantum secure direct communication (QSDC) is one important branch of quantum communication. In contrast to other branches of quantum communication, it transmits secret information directly. Recently, remarkable progress has been made in proof-of-principle experimental demonstrations of QSDC. However, it remains a technical feat to bring QSDC into a practical application. Here, we report the implementation of a practical quantum secure communication system. The security is analyzed in the Wyner wiretap channel theory. The system uses a coding scheme of concatenation of low-density parity-check (LDPC) codes and works in a regime with a realistic environment of high noise and high loss. The present system operates with a repetition rate of 1 MHz at a distance of 1.5 kilometers. The secure communication rate is 50 bps, sufficient to effectively send text messages and reasonably sized files of images and sounds.
机译:超级计算机的快速发展和量子计算机的前景对通信的安全性构成越来越严重的威胁。利用量子力学原理,量子通信提供了可证明的通信安全性,并且是应对此类威胁的有希望的解决方案。量子安全直接通信(QSDC)是量子通信的重要分支之一。与量子通信的其他分支相反,它直接传输秘密信息。最近,在QSDC的原理证明实验演示方面取得了显着进展。但是,将QSDC投入实际应用仍然是一项技术壮举。在这里,我们报告了一个实用的量子安全通信系统的实现。在Wyner窃听通道理论中分析了安全性。该系统使用低密度奇偶校验(LDPC)码级联的编码方案,并在具有高噪声和高损耗的现实环境中工作。本系统在1.5公里的距离上以1 MHz的重复频率运行。安全的通信速率为50 bps,足以有效发送文本消息以及合理大小的图像和声音文件。

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