Continuous-variable quantum key distribution over 28.6 km fiber with an integrated silicon photonic receiver chip

Author:

Bian Yiming12ORCID,Pan Yan3,Xu Xuesong12ORCID,Zhao Liang12,Li Yang3ORCID,Huang Wei3,Zhang Lei14ORCID,Yu Song12ORCID,Zhang Yichen12ORCID,Xu Bingjie3

Affiliation:

1. State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications 1 , Beijing 100876, China

2. School of Electronic Engineering, Beijing University of Posts and Telecommunications 2 , Beijing 100876, China

3. Science and Technology on Communication Security Laboratory, Institute of Southwestern Communication 3 , Chengdu 610041, China

4. School of Integrated Circuits, Beijing University of Posts and Telecommunications 4 , Beijing 100876, China

Abstract

Quantum key distribution, which ensures information-theoretically secret key generation, is currently advancing through photonic integration to achieve high performance, cost reduction, and compact size, thereby facilitating the large-scale deployment. Continuous-variable quantum key distribution is an attractive approach for photonic integrations due to its compatibility with off-the-shelf optical communication devices. However, its chip-based systems have encountered significant limitations primarily related to the shot-noise-limited receiver design, which demands low noise, wide bandwidth, high clearance, and well stability. Here, we report the implementation of a real local oscillator continuous-variable quantum key distribution system with an integrated silicon photonic receiver chip. Thanks to the well-designed chip-based homodyne detectors with a bandwidth up to 1.5 GHz and a clearance up to 7.42 dB, the transmission distance of the system has been extended to 28.6 km, achieving a secret key generation rate of Mbps level. This technological advancement enables the quantum key distribution systems with photonic integrated receivers to achieve the coverage in both access network scenarios and short-distance metropolitan interconnections, paving the way for the development of the next-generation quantum key distribution networks on a large scale.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Sichuan science and technology program

Natural Science Foundation of Sichuan Province

Basic Research Program of china

Equipment Advance Research Field Foundation

Chengdu Key Research and Development Support Program

Publisher

AIP Publishing

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