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Frequency coding quantum key distribution channel based on serial photons amplitude modulation and phase commutation

机译:基于串行光子调幅和换相的频率编码量子密钥分配通道

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The technology of frequency coding in channels of quantum key distribution allows to determine the ground state of photons through the value of the amplitude of its carrier, frequency modulated in phase (PM) or amplitude (AM) by a radio-frequency signal, and the resulting side components. Over the past twenty years, it has been substantially modified and improved. At the same time, in recent works, an expanded understanding of the frequency coding principle is used, in which each photon state is associated not with the phase of the modulating signal at a certain frequency, but with one or more sideband frequencies or the carrier frequency of the photon itself. In this paper, we present the results of constructing a frequency coding system of quantum key distribution (QK.D) based on the serial electro-optical photon amplitude modulation and phase commutation. The possibility of reducing the probability of achieving a positive result in PNS attacks by Eva is shown by eliminating the carrier of the signal transmitted via the quantum channel from the structure of the key distribution. It was early noted, that the smallest value of QBER is achieved in schemes with a passive definition of one or two basic states of a photon, i.e. without the use of remodulation processes, that is realized in considering. Additionally it is not necessary to form a notch filter system, which is usually carried out using fiber Bragg gratings (FBG) or arrayed waveguide gratings (AWG) for discrimination the photon carrier and its sideband components.
机译:量子密钥分配通道中的频率编码技术允许通过其载波幅度值,通过射频信号以相位(PM)或幅度(AM)调制的频率以及产生的副部件。在过去的二十年中,已对其进行了重大修改和改进。同时,在最近的工作中,使用了对频率编码原理的扩展理解,其中每个光子状态不与特定频率下的调制信号的相位相关,而是与一个或多个边带频率或载波相关联。光子本身的频率。在本文中,我们介绍了基于串行电光光子幅度调制和相位交换构建量子密钥分配(QK.D)频率编码系统的结果。通过从密钥分布的结构中消除通过量子信道传输的信号的载波,可以显示出降低Eva在PNS攻击中获得肯定结果的可能性的可能性。早已注意到,在对光子的一个或两个基本状态进行无源定义的方案中,即在不考虑重新调制过程的情况下,实现了QBER的最小值。另外,不必形成陷波滤波器系统,该陷波滤波器系统通常使用光纤布拉格光栅(FBG)或阵列波导光栅(AWG)进行,以区分光子载体及其边带分量。

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