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Experiments of 10 Gbit/sec quantum stream cipher applicable to optical Ethernet and optical satellite link

机译:适用于光以太网和光卫星链路的10 Gbit / sec量子流密码的实验

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摘要

The security issue for the next generation optical network which realizes Cloud Computing System Service with data center" is urgent problem. In such a network, the encryption by physical layer which provide super security and small delay should be employed. It must provide, however, very high speed encryption because the basic link is operated at 2.5 Gbit/sec or 10 Gbit/sec. The quantum stream cipher by Yuen-2000 protocol (Y-00) is a completely new type random cipher so called Gauss-Yuen random cipher, which can break the Shannon limit for the symmetric key cipher. We develop such a cipher which has good balance of the security, speed and cost performance. In SPIE conference on quantum communication and quantum imaging V, we reported a demonstration of 2.5 Gbit/sec system for the commercial link and proposed how to improve it to 10 Gbit/sec. This paper reports a demonstration of the Y-00 cipher system which works at 10 Gbit/sec. A transmission test in a laboratory is tried to get the basic data on what parameters are important to operate in the real commercial networks. In addition, we give some theoretical results on the security. It is clarified that the necessary condition to break the Shannon limit requires indeed the quantum phenomenon, and that the full information theoretically secure system is available in the satellite link application.
机译:实现带有数据中心的云计算系统服务的下一代光网络的安全问题是迫在眉睫的问题。在这种网络中,应采用提供超级安全性和小延迟的物理层加密。由于基本链接以2.5 Gbit / sec或10 Gbit / sec的速度运行,因此具有非常高的加密速度。Yuen-2000协议(Y-00)的量子流密码是一种全新的随机密码,称为高斯-Yuen随机密码,它可以打破对称密钥的Shannon限制,我们开发了一种在安全性,速度和成本性能之间达到良好平衡的密码,在SPIE量子通信和量子成像V会议上,我们演示了2.5 Gbit / sec的演示。商业链接的系统,并提出了如何将其提高到10 Gbit / sec的方法。本文报告了以10 Gbit / sec的速度工作的Y-00密码系统的演示,并尝试在实验室进行传输测试以获取有关在实际的商业网络中运行重要参数的基本数据。另外,我们给出了一些关于安全性的理论结果。阐明了打破香农极限的必要条件的确需要量子现象,并且在卫星链路应用中可以使用理论上完整的信息安全系统。

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