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具有直接激光调制的延时光电振荡器中的多稳定性、弛豫振荡和混沌

Multistability, relaxation oscillations, and chaos in time-delayed optoelectronic oscillators with direct laser modulation.

作者信息

Talla Mbé Jimmi Hervé, Chiajeu Njidjou Michael, Talla Alain Francis, Woafo Paul, Chembo Yanne K

出版信息

Opt Lett. 2024 Mar 1;49(5):1277-1280. doi: 10.1364/OL.516965.

Abstract

We investigate the nonlinear dynamics of an optoelectronic oscillator that is implemented with a laser diode (LD) with time-delayed feedback. In this system, electrical-to-optical conversion is directly implemented using the direct modulation of the laser diode itself, instead of an electrooptical modulator as in conventional architectures. Moreover, we consider the cubic nonlinear saturation of the characteristic laser power-intensity (P-I) transfer function far above threshold, instead of its simplified piecewise linear counterpart. We perform the stability analysis of the oscillator, and we show that it displays a rich dynamics that includes quasi-harmonic, relaxation oscillations, and chaos. We also show that the oscillator is strongly hysteretic and displays a wide variety of multistable behaviors, including the rare case of bistability between chaotic attractors. Our analytical and numerical results are found to be in good agreement with the experimental measurements.

摘要

我们研究了一种采用具有时延反馈的激光二极管(LD)实现的光电振荡器的非线性动力学。在该系统中,电光转换是通过直接调制激光二极管本身来直接实现的,而不像传统架构那样使用电光调制器。此外,我们考虑了远高于阈值时特征激光功率 - 强度(P - I)传递函数的三次非线性饱和,而不是其简化的分段线性对应物。我们对振荡器进行了稳定性分析,结果表明它展现出丰富的动力学特性,包括准谐波、弛豫振荡和混沌。我们还表明该振荡器具有强烈的滞后现象,并呈现出多种多稳态行为,包括混沌吸引子之间罕见的双稳态情况。我们的分析和数值结果与实验测量结果吻合良好。

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