Rapid programmable/code-length-variable, time-domain bit-by-bit code shifting for high-speed secure optical communication
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference10 articles.
1. Physical layer security in fiber-optic networks using optical signal processing
2. Chaos-based communications at high bit rates using commercial fibre-optic links
3. Novel super structured Bragg gratings for optical encryption
4. Security Enhancement of SPECTS O-CDMA Through Concealment Against Upstream DPSK Eavesdropping
5. Security performance of optical CDMA Against eavesdropping
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2. Experimental Investigation on the Security Vulnerability of Electro-optics Self-Feedback Phase Encryption Loop for Secure Optical Communication;2022 Asia Communications and Photonics Conference (ACP);2022-11-05
3. Photonic-layer secure 56 Gb/s PAM4 optical communication based on common noise driven synchronous private temporal phase en/decryption;Optics Letters;2022-09-30
4. Experimental demonstration of synchronous privacy enhanced chaotic temporal phase en/decryption for high speed secure optical communication;Optics Express;2022-08-11
5. 32 Gb/s physical-layer secure optical communication over 200 km based on temporal dispersion and self-feedback phase encryption;Optics Letters;2022-02-10
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