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Integration of quantum cryptography into fiber-optic telecommunication systems

机译:将量子密码学集成到光纤电信系统中

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摘要

The prototype of a new quantum cryptosystem is described. Such a cryptosystem is naturally called time-shift quantum cryptography. It realizes all basic quantum-cryptography protocols [BB84, B92, BB84(4 + 2)] in a common fiber-optic system. This scheme does not involve Mach-Zehnder interferometers, which enables one to naturally realize the multiplex mode of secure key distribution and to naturally integrate this quantum-cryptography scheme into traditional fiber-optic telecommunication systems. The proposed time coding method in quantum cryptography makes it possible to significantly simplify experimental schemes and to exclude the finest fiber-optic part, the interferometer. In essence, the fundamental difference of the time coding method from the phase coding method is that the part using phase relations in superposition between "parts" of a quantum state is eliminated from the phase-coding method, and only the part using the time division principle is retained. The time division principle is common for both methods and is minimally necessary, in contrast to the phase-coding method, which can be excluded altogether. The proposed scheme is briefly compared with the two most developed phase-coding schemes (without self-compensation and with passive self-compensation). (C) 2004 MAIK "Nauka / Interperiodica".
机译:描述了一种新的量子密码系统的原型。这样的密码系统自然地称为时移量子密码术。它在一个普通的光纤系统中实现了所有基本的量子密码术协议[BB84,B92,BB84(4 + 2)]。该方案不涉及Mach-Zehnder干涉仪,它使人们能够自然地实现安全密钥分配的复用模式,并将这种量子密码方案自然地集成到传统的光纤电信系统中。量子密码术中提出的时间编码方法可以显着简化实验方案,并排除最细的光纤部分,即干涉仪。本质上,时间编码方法与相位编码方法的根本区别在于,从相位编码方法中消除了在量子态“各部分”之间使用相位关系的部分,而仅使用了时间分割的部分原则被保留。时分原理对于这两种方法都是通用的,并且与相位编码方法相反,后者是必需的,而相位编码方法可以完全排除。将所提出的方案与两种最先进的相位编码方案(无自补偿和无源自补偿)进行简要比较。 (C)2004 MAIK“ Nauka / Interperiodica”。

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