Secure key distribution based on hybrid chaos synchronization between semiconductor lasers subject to dual injections

Author:

Liu Shiqin,Jiang NingORCID,Zhang Yiqun,Wang Chao1,Zhao AnkeORCID,Qiu Kun,Zhang Qianwu2ORCID

Affiliation:

1. Institute of Spacecraft Application System Engineering

2. Shanghai University

Abstract

We propose and numerically demonstrate a novel secure key distribution (SKD) scheme by using dynamically synchronized semiconductor lasers (SLs) subject to common dual injections from two mutually coupled SLs. The performance of hybrid chaos synchronization, complexity of chaotic signals, chaos-based key distribution, and the privacy of SKD scheme are systematically discussed. It is shown that high-quality hybrid chaos synchronization of zero lag and lead lag can be both achieved between two local lasers under different injection delay conditions, whereas low cross correlations are observed among the driving lasers and the local lasers. By randomly perturbing the injection delays with four independent random sequences, the outputs of local SLs can be dynamically synchronized. Extracting the outputs in the synchronization time slots of zero lag and lead lag, synchronous entropy sources are obtained and used to generate keys with high consistency at local ends of Alice and Bob, which are robust to the parameter mismatches of local lasers to some extent. Moreover, large BER is calculated in two types of typical illegal attacks, which demonstrates the security of the proposed scheme. This work proposed a high-level secure key distribution solution to one-time pad communication.

Funder

National Natural Science Foundation of China

Sichuan Science and Technology Program

Fundamental Research Funds for the Central Universities

Exchange Project for Key Lab of Optical Fiber Sensing and Communications

Science and Technology Commission of Shanghai Municipality

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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