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Experimental distinction of weak and strong chaos in delay-coupled semiconductor lasers

机译:延迟耦合半导体激光器中弱和强混沌的实验区别

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Semiconductor lasers subject to external perturbations often exhibit deterministic chaotic behaviour. Optical delayed self-feedback is a common way to induce chaotic laser emission. In recent years, chaotic semiconductor lasers have proven to be useful in a number of practical applications, ranging from chaos communications and secure key distribution to random bit generation or LIDAR systems [1]. In particular, chaos communications and secure key distribution rely on the synchronization or two or more lasers operating in the chaotic regime [2]. Thus, a high degree of synchronization is desired for practical applications.
机译:受到外部干扰的半导体激光器通常表现出确定性的混沌行为。光学延迟的自反馈是引起混沌激光发射的常见方法。近年来,混沌半导体激光器已被证明可用于许多实际应用中,从混沌通信和安全密钥分发到随机位生成或LIDAR系统[1]。特别是,混乱的通信和安全的密钥分发依赖于在混乱状态下运行的同步或两个或多个激光器[2]。因此,对于实际应用需要高度的同步。

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