The linear constraint of secret key rate capacity is overcome by the tiwn-field quantum key distribution (QKD). However, the complex phase-locking and phase-tracking technique requirements throttle the real-life applications of twin-field protocol. The asynchronous measurement-device-independent (AMDI) QKD or called mode-pairing QKD protocol [PRX Quantum 3, 020315 (2022), Nat. Commun. 13, 3903 (2022)] can relax the technical requirements and keep the similar performance of twin-field protocol. Here, we propose an AMDI-QKD protocol with a nonclassical light source by changing the phase-randomized weak coherent state to a phase-randomized coherent-state superposition (CSS) in the signal state time window. Simulation results show that our proposed hybrid source protocol significantly enhances the key rate of the AMDI-QKD protocol, while exhibiting robustness to imperfect modulation of nonclassical light sources.
翻译:线性约束的保密密钥率能力可以通过双场量子密钥分发(QKD)协议得到克服。然而,复杂的相位锁定和相位跟踪技术要求限制了双场协议的实际应用。异步测量装置无关(AMDI)QKD或称为模式配对QKD协议 [PRX Quantum 3, 020315 (2022),Nat. Commun. 13, 3903 (2022)] 可以缓解技术要求,同时保持类似双场协议的性能。在这里,我们提出了一种具有非经典光源的AMDI-QKD协议,通过将信号状态时间窗口中的相位随机化弱相干态改变为相位随机化相干态叠加(CSS)。模拟结果表明,我们提出的混合源协议显著提高了AMDI-QKD协议的密钥速率,同时展现了对非经典光源不完美调制的鲁棒性。