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Parallel generation of low-correlation wideband complex chaotic signals using CW laser and external-cavity laser with self-phase-modulated injection
使用 CW 激光器和具有自相位调制注入的外腔激光器并行生成低相关宽带复杂混沌信号
CWレーザーと自己位相変調注入を備えた外部キャビティレーザーを使用した低相関広帯域複素カオス信号の並列生成
자기 위상 변조 주입과 함께 CW 레이저 및 외부 공동 레이저를 사용하여 상관 관계가 낮은 광대역 복합 혼돈 신호의 병렬 생성
Generación en paralelo de señales caóticas complejas de banda ancha de baja correlación utilizando láser CW y láser de cavidad externa con inyección automodulada de fase
Génération parallèle de signaux chaotiques complexes à large bande à faible corrélation à l'aide d'un laser CW et d'un laser à cavité externe avec injection auto-modulée en phase
Параллельная генерация низкокорреляционных широкополосных сложных хаотических сигналов с использованием непрерывного лазера и лазера с внешним резонатором с фазовой самомодулятивной инжекцией
Anke Zhao 赵安可, Ning Jiang 江宁, Jiafa Peng 彭家发, Shiqin Liu 刘世勤, Yiqun Zhang 张逸群, Kun Qiu 邱昆
School of Information and Communication Engineering, University of Electronic Science and Technology of China, Chengdu 611731, China
中国 成都 电子科技大学信息与通信工程学院
Opto-Electronic Advances, 15 March 2022
Abstract

A novel scheme for generating optical chaos is proposed and experimentally demonstrated, which supports to simultaneously produce two low-correlation chaotic signals with wideband spectrum and suppressed time-delay-signature (TDS).

In the proposed scheme, we use the output of an external-cavity semiconductor laser (ECSL) as the driving signal of a phase modulator to modulate the output of a CW laser. Then the phase-modulated continuous-wave (CW) light is split into two parts, one is injected back into the ECSL that outputs one chaotic signal, while the other part is passed through a dispersion module for generating another chaotic signal simultaneously.

The experimental results prove that the proposed scheme has three merits. Firstly, it can improve the bandwidth of ECSL-based chaos by several times, and simultaneously generate another wideband flat-spectrum chaotic signal. Secondly, the undesired TDS characteristics of the simultaneously-generated chaotic signals can be efficiently suppressed to an indistinguishable level within a wide parameter range, as such the complexities of the chaotic signals are considerably high. Thirdly, the correlation coefficient between these two simultaneously-generated chaotic signals is smaller than 0.1.

The proposed scheme provides an attractive solution for parallel multiple chaos generation, and shows great potential for multiple channel chaos communications and multiple random bit generations.
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