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Improvement of continuous-variable quantum key distribution systems by using optical preamplifiers

机译:通过使用光学前置放大器改进连续变量量子密钥分发系统

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Continuous-variable quantum key distribution protocols have been implemented recently, based on Gaussian modulation of the quadratures of coherent states. A present limitation of such systems is the finite efficiency of the detectors, that can in principle be compensated for by the use of classical optical preamplifiers. Here we study this possibility in detail, by deriving the modified secret key generation rates when an optical parametric amplifier is placed at the output of the quantum channel. After presenting a general set of security proofs, we show that the use of preamplifiers does compensate all the imperfections of the detectors when the amplifier is optimal in terms of gain and noise. Imperfect amplifiers can also enhance the system performance, under conditions which are generally satisfied in practice.
机译:基于相干态正交的高斯调制,近来已实现了连续变量量子密钥分发协议。这种系统的当前局限性是检测器的有限效率,其在原理上可以通过使用经典的光学前置放大器来补偿。在这里,我们通过推导将光参量放大器放置在量子通道的输出处时修改的秘密密钥生成速率来详细研究这种可能性。提出了一套通用的安全证明后,我们表明,当放大器在增益和噪声方面处于最佳状态时,使用前置放大器确实可以补偿检测器的所有缺陷。在实践中通常可以满足的条件下,不完美的放大器还可以增强系统性能。

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