Adaptive Gaussian quadrature detection for continuous-variable quantum key distribution

SPIE OPTO Pub Date : 2016-03-16 DOI:10.1117/12.2211743
L. Gyongyosi, S. Imre
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引用次数: 5

Abstract

We propose the adaptive quadrature detection for multicarrier continuous-variable quantum key distribution (CVQKD). A multicarrier CVQKD scheme uses Gaussian subcarrier continuous variables for the information conveying and Gaussian sub-channels for the transmission. The proposed multicarrier detection scheme dynamically adapts to the subchannel conditions using a corresponding statistics which is provided by our sophisticated sub-channel estimation procedure. The sub-channel estimation phase determines the transmittance coefficients of the sub-channels, which information are used further in the adaptive quadrature decoding process. We define a technique to estimate the transmittance conditions of the sub-channels. We introduce the terms of single and collective adaptive quadrature detection. We prove the achievable error probabilities, the signal-to-noise ratios, and quantify the attributes of the framework. The adaptive detection scheme allows to utilize the extra resources of multicarrier CVQKD and to maximize the amount of transmittable valuable information in diverse measurement and transmission conditions. The framework is particularly convenient for experimental CVQKD scenarios.
连续变量量子密钥分配的自适应高斯正交检测
提出了多载波连续变量量子密钥分配(CVQKD)的自适应正交检测方法。一种多载波CVQKD方案使用高斯子载波连续变量进行信息传递,使用高斯子信道进行传输。所提出的多载波检测方案利用我们先进的子信道估计程序提供的相应统计量动态适应子信道条件。子信道估计阶段决定了子信道的透光系数,这些信息在自适应正交译码过程中被进一步利用。我们定义了一种估计子信道透射率条件的技术。介绍了单自适应正交检测和集体自适应正交检测。我们证明了可实现的误差概率、信噪比,并量化了框架的属性。自适应检测方案允许利用多载波CVQKD的额外资源,并在不同的测量和传输条件下最大化可传输的有价值信息的数量。该框架对于实验性CVQKD场景特别方便。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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