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Quantum-to-the-Home (QTTH): Achieving Gbits/s Secure Key Rates via Commercial Off-the-Shelf Telecommunication Equipments

机译:量子到家(QTTH):通过商用现成的电信设备实现Gbit / s的安全密钥速率

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摘要

There is current significant interest in Fiber-to-the-Home (FTTH) networks, i.e. end-to-end optical connectivity. Currently, it may be limited due to the presence of last-mile copper wire connections. However, in near future it is envisaged that FTTH connections will exist, and a key offering would be the possibility of optical encryption that can best be implemented using quantum key distribution (QKD). However, it is very important that the QKD infrastructure is compatible with the already existing networks for a smooth transition and integration with the classical data traffic. In this paper, we report the feasibility of using off-the-shelf telecommunication components to enable high performance Continuous-Variable Quantum Key Distribution (CV-QKD) systems that can yield secure key rates in the range of 100 Mbits/s under practical operating conditions. Multilevel phase modulated signals (m-PSK) are evaluated in-terms of secure key rates and transmission distances. The traditional receiver is discussed, aided by the phase noise cancellation based digital signal processing module for detecting the complex quantum signals. Furthermore , we have discussed the compatibility of multiplexers and de-multiplexers for wavelength division multiplexed quantum-to-the-home (QTTH) network as well the impact of splitting ratio is analyzed. The results are thoroughly compared with the commercially available high-cost encryption modules.
机译:当前,对光纤到户(FTTH)网络,即端到端光连接性有很大的兴趣。当前,由于存在最后一英里的铜线连接,因此可能受到限制。但是,可以预见的是,在不久的将来将会存在FTTH连接,而密钥的提供将是可以使用量子密钥分发(QKD)最好实现光学加密的可能性。但是,QKD基础结构与现有网络兼容对于平滑过渡和与传统数据流量的集成非常重要。在本文中,我们报告了使用现成的电信组件来实现高性能连续可变量子密钥分发(CV-QKD)系统的可行性,该系统在实际操作中可以产生100 Mbit / s的安全密钥速率条件。根据安全密钥速率和传输距离评估多级相位调制信号(m-PSK)。讨论了传统的接收机,借助基于相位噪声消除的数字信号处理模块来检测复杂的量子信号。此外,我们讨论了波分复用量子家庭网络中复用器和解复用器的兼容性,并分析了分光比的影响。将结果与市售的高成本加密模块进行了彻底比较。

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  • 作者单位
  • 年度 2017
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类
  • 入库时间 2022-08-31 14:46:26

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