Future Quantum-to-the-Home (QTTH) All-Optical Networks (Invited Talk)

R. Asif
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引用次数: 3

Abstract

For imparting data security to the end-users in a archetypal fiber-to-the-home (FTTH) network, quantum cryptography (QC) is getting much attention now-a-days. QC or more specifically quantum key distribution (QKD) promises unconditionally secure protocol, the Holy Grail of communication and information security, that is based on the fundamental laws of quantum physics. In this talk, we will discuss our latest experiments on a four-state (Quadrature Phase Shift Keying ‘QPSK’) RF sub-carrier assisted continuous-variable quantum key distribution (CV -QKD) multi-user network based on ultra low loss quantum channel (pure silica core fiber ‘PSCF’) and micro-electromechanical systems (MEMS) based add/drop switch. A coherent receiver with local local oscillator (LLO) is implemented, which ideally could not be accessed by eavesdroppers (Eve), aided with digital signal processing (DSP) module for phase noise cancellation (PNC). With 10 Gbit/s QPSK classical WDM signals, we have recorded secure key rates of 8.65 Mbit/s over 20 km and upto 12 Mbit/s over lossless channel. The experimental setup is further extended to a optically switched multi-user network, i.e. multiple Bobs, for implementing add/drop operations to achieve key rates of 5.98 Mbit/s for a 2 _2 MEMS switch. It is expected that the proposed cost-effective and energy efficient QKD network can facilitate the practical application of the CV -QKD protocol on commercial scale in near future for smart access networks.
未来量子到户(QTTH)全光网络(特邀演讲)
为了在典型的光纤到户(FTTH)网络中向最终用户提供数据安全性,量子密码学(QC)如今受到了越来越多的关注。QC或更具体地说,量子密钥分发(QKD)承诺无条件的安全协议,这是基于量子物理基本定律的通信和信息安全的圣杯。在这次演讲中,我们将讨论我们在基于超低损耗量子信道(纯硅芯光纤PSCF)和基于微机电系统(MEMS)的加/丢开关的四态(正交相移键控' QPSK ')射频子载波辅助连续变量量子密钥分配(CV -QKD)多用户网络上的最新实验。采用数字信号处理(DSP)模块进行相位噪声消除(PNC),实现了一种具有本振(LLO)的相干接收机,理想情况下不能被窃听者(Eve)访问。使用10 Gbit/s的QPSK经典WDM信号,我们在20公里上记录了8.65 Mbit/s的安全密钥速率,在无损信道上记录了高达12 Mbit/s的安全密钥速率。实验装置进一步扩展到光交换多用户网络,即多个bob,实现添加/删除操作,以实现2 _2 MEMS交换机的5.98 Mbit/s密钥速率。期望所提出的高性价比、高能效的QKD网络能够在不久的将来促进CV -QKD协议在智能接入网中的商业规模的实际应用。
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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