Asynchronous measurement-device-independent quantum key distribution with hybrid source

Author:

Bai Jun-Lin,Xie Yuan-Mei,Fu Yao1,Yin Hua-LeiORCID,Chen Zeng-Bing

Affiliation:

1. Chinese Academy of Sciences

Abstract

The linear constraint of secret key rate capacity is overcome by the twin-field quantum key distribution (QKD). However, the complex phase-locking and phase-tracking technique requirements throttle the real-life applications of the twin-field protocol. The asynchronous measurement-device-independent (AMDI) QKD, also called the mode-pairing QKD, protocol can relax the technical requirements and keep the similar performance of the 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 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.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province

Fundamental Research Funds for the Central Universities

Key Research and Development Program of Nanjing Jiangbei New Area

Program for Innovative Talents and Entrepreneurs in Jiangsu

Program of Song Shan Laboratory

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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