Miroshnichenko G P, Kozubov A V, Gaidash A A, Gleim A V, Horoshko D B
Opt Express. 2018 Apr 30;26(9):11292-11308. doi: 10.1364/OE.26.011292.
We consider a subcarrier wave quantum key distribution (QKD) system, where quantum encoding is carried out at weak sidebands generated around a coherent optical beam as a result of electro-optical phase modulation. We study security of two protocols, B92 and BB84, against one of the most powerful attacks for this class of systems, the collective beam-splitting attack. Our analysis includes the case of high modulation index, where the sidebands are essentially multimode. We demonstrate numerically and experimentally that a subcarrier wave QKD system with realistic parameters is capable of distributing cryptographic keys over large distances in presence of collective attacks. We also show that BB84 protocol modification with discrimination of only one state in each basis performs not worse than the original BB84 protocol in this class of QKD systems, thus significantly simplifying the development of cryptographic networks using the considered QKD technique.
我们考虑一种副载波波光量子密钥分发(QKD)系统,其中量子编码是在相干光束周围通过电光相位调制产生的弱边带上进行的。我们研究了两种协议(B92和BB84)针对此类系统最强大的攻击之一——集体分束攻击的安全性。我们的分析包括高调制指数的情况,此时边带本质上是多模的。我们通过数值模拟和实验证明,具有实际参数的副载波波光QKD系统在存在集体攻击的情况下能够在长距离上分发加密密钥。我们还表明,在这类QKD系统中,仅在每个基中区分一个状态的BB84协议修改版本的性能不低于原始BB84协议,从而显著简化了使用所考虑的QKD技术的加密网络的开发。