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Dynamics and linear stability analysis in semiconductor lasers with phase-conjugate feedback

机译:具有相位共轭反馈的半导体激光器的动力学和线性稳定性分析

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Dynamics of semiconductor lasers with phase-conjugate feedback are studied. At a certain feedback level, the laser output evolves into periodic oscillations due to the undamped relaxation oscillation which corresponds to the highest mode of the linear stability analysis. With increasing feedback level, the second mode is excited in quasi-periodic oscillations. Though the second mode frequency in the conventional feedback is almost the same as the external cavity mode frequency, the frequency in the phase-conjugate feedback is completely different from that. We study the dynamics of the phase-conjugate feedback, showing the time series, power spectrum, and attractors, and compare the results with those in the conventional feedback. The transition of the linear modes is also studied from the linear stability analysis. The results derived from the linear stability analysis and the mode transition are compatible with those of the simulations based on the rate equations.
机译:研究了具有相位共轭反馈的半导体激光器的动力学。在一定的反馈水平上,由于无阻尼的弛豫振荡,激光输出演变为周期性振荡,这对应于线性稳定性分析的最高模式。随着反馈水平的提高,准周期振荡会激发第二种模式。尽管常规反馈中的第二模式频率与外腔模式频率几乎相同,但相位共轭反馈中的频率却与之完全不同。我们研究了相位共轭反馈的动力学,显示了时间序列,功率谱和吸引子,并将结果与​​常规反馈中的结果进行了比较。还从线性稳定性分析中研究了线性模式的转变。线性稳定性分析和模式转换得出的结果与基于速率方程的仿真结果兼容。

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