Ye Wei, Zhong Hai, Liao Qin, Huang Duan, Hu Liyun, Guo Ying
Opt Express. 2019 Jun 10;27(12):17186-17198. doi: 10.1364/OE.27.017186.
Quantum photon-catalysis operations can be utilized for improving the performance of continuous-variable quantum key distribution (CVQKD) systems. Motivated by characteristics of quantum photon-catalysis operations that can be implemented by the existing technologies, we consider the performance improvement of self-referenced (SR) CVQKD involving zero-photon catalysis operation. We find that the zero-photon catalysis can be regarded as a noiseless attenuation, and the numerical simulations show that the zero-photon catalysis (ZPC)-based SR-CVQKD scheme outperforms the original SR-CVQKD scheme. In addition, to highlight the advantage of applying zero-photon catalysis operation into SR-CVQKD systems, we make a comparison about the performances between the ZPC-based SR-CVQKD scheme and the previous single-photon subtraction (SPS)-based SR-CVQKD scheme. Numerical simulations show that the ZPC-based SR-CVQKD is superior to the single-photon subtraction case with respect to the transmission distance and the tolerable excess noise. Especially, the ZPC-based SR-CVQKD allows the lower quantum detection efficiency and the higher electronic noise to achieve the same performance. These results show that the proposed protocol is expected to provide theoretical reference for the practical application of SR-CVQKD in metropolitan areas.
量子光子催化操作可用于提高连续变量量子密钥分发(CVQKD)系统的性能。受现有技术可实现的量子光子催化操作特性的启发,我们考虑了涉及零光子催化操作的自参考(SR)CVQKD的性能提升。我们发现零光子催化可被视为无噪声衰减,数值模拟表明基于零光子催化(ZPC)的SR-CVQKD方案优于原始的SR-CVQKD方案。此外,为突出将零光子催化操作应用于SR-CVQKD系统的优势,我们对基于ZPC的SR-CVQKD方案与先前基于单光子减法(SPS)的SR-CVQKD方案的性能进行了比较。数值模拟表明,基于ZPC的SR-CVQKD在传输距离和可容忍的过量噪声方面优于单光子减法情况。特别是,基于ZPC的SR-CVQKD允许更低的量子探测效率和更高的电子噪声来实现相同的性能。这些结果表明,所提出的协议有望为SR-CVQKD在城域中的实际应用提供理论参考。