计算机科学
量子密钥分配
计算机网络
路由协议
量子纠缠
中继器(钟表)
钥匙(锁)
量子网络
量子密码学
布线(电子设计自动化)
量子
分布式计算
计算机安全
量子信息
编码(内存)
物理
量子力学
人工智能
作者
Omar Amer,Walter O. Krawec,Bing Wang
标识
DOI:10.1109/qce49297.2020.00027
摘要
As quantum key distribution becomes increasingly practical, questions of how to effectively employ it in large-scale networks and over large distances becomes increasingly important. To that end, in this work, we model the performance of the E91 entanglement based QKD protocol when operating in a network consisting of both quantum repeaters and trusted nodes. We propose a number of routing protocols for this network and compare their performance under different usage scenarios. Through our modeling, we investigate optimal placement and number of trusted nodes versus repeaters depending on device performance (e.g., quality of the repeater's measurement devices). Along the way we discover interesting lessons determining what are the important physical aspects to improve for upcoming quantum networks in order to improve secure communication rates.
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