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Quantum stream cipher beyond the Shannon limit ofsymmetric key cipher and the possibility ofexperimental demonstration

机译:量子流密码超出了非对称密钥的香农极限,并且有可能进行实验性演示

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摘要

The security in the next generation optical network which realizes "Cloud Computing System Service with data center" is one of the most important problems. In such a network, the encryption in physical layer which provide super security and small delay is a preferable. It has to be applicable, however, to very high speed data because the basic link is operated at 2.5 Gbit/sec ~ 10 Gbit/sec. The quantum stream cipher by Yuen-2000 protocol (Y00) is a completely new type of random cipher, which can exceed the Shannon limit of the symmetric key cipher. This paper extends some theoretical results on the security for quantum stream cipher such as Y00 protocol and generalized Y00. First, the conditions to exceed the Shannon limit are summarized. We formulate a generalized secret capacity in the sense of wire tap channel supported by secret key to clarify a cipher exceeding the Shannon limit. The generalized secret capacities for space communication and fiber communication based on the generalized Y00 are given. When the relaxation of physical constraint or device limit of the eavesdropper is allowed, we point out that a cipher scheme exceeding the Shannon limit can be realized only by the conventional optical system.
机译:实现“带数据中心的云计算系统服务”的下一代光网络的安全性是最重要的问题之一。在这样的网络中,优选的是在物理层中提供超级安全性和小的延迟的加密。但是,它必须适用于非常高速的数据,因为基本链接的运行速度为2.5 Gbit / sec〜10 Gbit / sec。 Yuen-2000协议(Y00)的量子流密码是一种全新的随机密码,可以超过对称密钥密码的Shannon限制。本文扩展了有关量子流密码安全性的一些理论结果,例如Y00协议和广义Y00。首先,总结了超出香农极限的条件。我们在密钥支持的窃听通道的意义上制定广义的秘密容量,以阐明超出Shannon限制的密码。给出了基于广义Y00的空间通信和光纤通信的广义秘密容量。当允许放松窃听者的物理约束或设备限制时,我们指出超过香农限制的密码方案只能通过常规光学系统来实现。

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