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Pseudo-random wavelength hopping based on chaos: experimental generation and synchronization

机译:基于混沌的伪随机波长跳跃:实验生成和同步

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This paper proposes and demonstrates a scheme for generating pseudo-random wavelength hopping sequences in semiconductor lasers by using chaotic dynamics. The system consists of a wavelength tunable light source, a nonlinear wavelength element, and a delayed opto-electric feedback. By feeding back the filter output signal to the light source to control the lasing wavelength, it is possible to achieve periodic or chaotic wavelength variation patterns with a wide variation range covering several longitudinal modes. In experiments, wavelength hopping among up to 10 modes was observed with the hopping frequency about 100 MHz. Synchronization of the wavelength hopping in two separate lasers is performed by coupling part of the feedback signal of one laser into the feedback of a second laser. Synchronization was observed between the on-off intensity modulation patterns of each pair of corresponding longitudinal laser modes.
机译:本文提出并通过使用混沌动力学来说明用于在半导体激光器中产生伪随机波长跳序的方案。该系统由波长可调光源,非线性波长元件和延迟光反馈组成。通过向光源馈送滤波器输出信号以控制激光波长,可以通过覆盖多个纵向模式的宽变化范围来实现周期性或混沌波长变化模式。在实验中,观察到多达10种模式中的波长跳跃,其中跳频频率约为100 MHz。通过将一个激光器的反馈信号的一部分耦合到第二激光器的反馈,通过将两个单独的激光器中的波长跳跃的同步进行。在每对对应的纵向激光模式的ON-OFF强度调制模式之间观察到同步。

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