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Algorithm for State-of-Polarization Generation in Polarization-Encoding Quantum Key Distribution

机译:偏振编码量子密钥分布中的极化生成算法

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In this paper we propose and validate an algorithm for the automatic and deterministic state of polarization (SOP) generation, with direct application in polarization-encoded quantum key distribution (QKD) systems. The proposed SOP generation algorithm uses an electronic polarization controller (EPC), whose active elements entail the concatenation of several fiber-squeezing-based waveplates. Initially, we carry out a characterization of the waveplates. After that, we present in detail the working principle of the proposed algorithm. Finally, the effectiveness of the algorithm is experimentally assessed through the calculation of the quantum bit error rate (QBER), where an Arduino Due is used to control the different waveplates of the EPC. The QBER was measured for periods of 4 hours and 10 hours when generating two or four SOPs, respectively, with an overall average QBER value of 2%. Results show the potential of the proposed method regarding the generation of automatic and deterministic SOPs, thus demonstrating viability for its practical implementation in polarization-encoding QKD systems.
机译:在本文中,我们提出并验证了用于自动和确定偏振状态(SOP)生成的算法,直接应用于偏振编码量子密钥分布(QKD)系统。所提出的SOP生成算法使用电子偏振控制器(EPC),其活动元件需要串联几个基于光纤的波波。最初,我们执行波波的表征。之后,我们详细介绍了所提出的算法的工作原理。最后,通过计算量子钻头误差率(QBET)进行实验评估算法的有效性,其中Arduino的使用用于控制EPC的不同波动。当分别产生两四个SOP时,QGER分别为4小时和10小时,整体平均QBER值为2%。结果表明,关于自动和确定性SOP的产生的提出方法的潜力,从而证明了在偏振编码QKD系统中的实际实现的可行性。

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