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Nonlinear Dynamics in Semiconductor Quantum Dot Laser Subject to Double Delayed Feedback: Numerical Analysis

机译:半导体量子点激光器中的非线性动力学经受双延迟反馈:数值分析

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摘要

In this study, the research on the nonlinear dynamics of semiconductor quantum dot laser with two time-delayed optical feedbacks is numerically investigated. Results show that the nonlinear dynamics behaviors of the laser are very sensitive to the rich system parameters in which both feedback strength and bias current are easily controlled to significantly influence the nonlinear dynamics including the periodic state and chaotic state. By judiciously adjusting the bias current of the laser or the feedback strength in the external cavity, period one, period doubling, quasi-period, and chaos are achieved. The feedback level-related bifurcation diagrams are analyzed in detail while fixing another feedback level at a constant or varying the bias current. In addition, the translation variables of the 0-1 test method that are clearly bounded for regular behavior and exhibit the Brownian motion for irregular phenomenon are adopted to further evaluate the periodic state and the chaotic state. These results can give insight into the quantum dot laser-based applications in various optical technologies.
机译:在该研究中,在数值上研究了对具有两个时间延迟光学反馈的半导体量子点激光器的非线性动力学的研究。结果表明,激光器的非线性动力学行为对富有的系统参数非常敏感,其中易于控制反馈强度和偏置电流,以显着影响包括周期性状态和混沌状态的非线性动态。通过使外腔中的激光器的偏置电流或外腔中的反馈强度,达到一个,周期加倍,准周期和混乱的偏置电流。详细分析反馈水平相关的分叉图,同时以恒定或改变偏置电流固定另一反馈电平。另外,采用了为常规行为明确限制的0-1测试方法的翻译变量,并展示了用于不规则现象的布朗运动以进一步评估周期性状态和混沌状态。这些结果可以在各种光学技术中深入了解基于量子点激光的应用。

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