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Random bit generation based on self-chaotic microlasers with enhanced chaotic bandwidth

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Version 2 2023-02-14, 23:35
Version 1 2023-01-06, 17:04
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posted on 2023-02-14, 23:35 authored by Jian-Cheng Li, Jin-Long Xiao, Yue-De Yang, You-Ling Chen, Yong-Zhen Huang
Chaotic semiconductor lasers have been widely investigated for high-speed random bit generation, which is applied for the generation of cryptographic keys for classical and quantum cryptography systems. Here, we propose and demonstrate a self-chaotic microlaser with enhanced chaotic bandwidth for high-speed random bit generation. By designing tri-mode interaction in a deformed square microcavity laser, we realize a self-chaotic laser caused by two-mode internal interaction, and achieve an enhanced chaotic standard bandwidth due to the photon-photon resonance effect by introducing the third mode. Moreover, 500 Gb/s random bit generation is realized and the randomness is verified by the NIST SP 800-22 statistics test. Our demonstration promises the applications of microlasers in secure communication, chaos radar, and optical reservoir computing, and also provides a platform for the investigations of multimode nonlinear laser dynamics.

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