Modeling and Simulation for Performance Evaluation of Optical Quantum Channels in Quantum key Distribution Systems

A. F. Mushatet, S. K. Tawfeeq
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Abstract

In this research work, a simulator with time-domain visualizers and configurable parameters using a continuous time simulation approach with Matlab R2019a is presented for modeling and investigating the performance of optical fiber and free-space quantum channels as a part of a generic quantum key distribution system simulator. The modeled optical fiber quantum channel is characterized with a maximum allowable distance of 150 km with 0.2 dB/km at =1550nm. While, at =900nm and =830nm the attenuation values are 2 dB/km and 3 dB/km respectively. The modeled free space quantum channel is characterized at 0.1 dB/km at =860 nm with maximum allowable distance of 150 km also. The simulator was investigated in terms of the execution of the BB84 protocol based on polarizing encoding with consideration of the optical fiber and free-space quantum channel imperfections and losses by estimating the quantum bit error rate and final secure key. This work shows a general repeatable modeling process for significant performance evaluation. The most remarkable result that emerged from the simulated data generated and detected is that the modeling process provides guidance for optical quantum channels design and characterization for other quantum key distribution protocols.
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量子密钥分配系统中光量子信道性能评估的建模与仿真
在这项研究工作中,利用Matlab R2019a的连续时间仿真方法,提出了一个具有时域可视化器和可配置参数的模拟器,用于建模和研究光纤和自由空间量子信道的性能,作为通用量子密钥分发系统模拟器的一部分。该光纤量子通道的最大允许距离为150 km,在=1550nm处的最大允许距离为0.2 dB/km。而在=900nm和=830nm处,衰减值分别为2 dB/km和3 dB/km。所建立的自由空间量子信道在860nm处的速率为0.1 dB/km,最大允许距离为150km。通过估计量子误码率和最终安全密钥,考虑光纤和自由空间量子信道的缺陷和损耗,对基于偏振编码的BB84协议的执行进行了仿真研究。这项工作显示了用于重要性能评估的一般可重复建模过程。从生成和检测的模拟数据中得出的最显著的结果是,建模过程为其他量子密钥分发协议的光量子通道设计和表征提供了指导。
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