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Stability analysis of semiconductor laser with phase-conjugate feedback

机译:具有相位共轭反馈的半导体激光器的稳定性分析

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The stability of the output power of a semiconductor laser with phase-conjugate feedback (PCF) is studied by numerical simulations based on the rate equations. We investigated the critical reflectivity at which the stable fixed output power evolves into periodic oscillation. As a result, we found that the critical reflectivity shows a periodic structure against the external cavity length and the stability is much enhanced at the periodic peak positions. The stability and dynamic behavior of a semiconductor laser with PCF are compared with those for conventional optical feedback. It is also found that the periods of the nearby peaks correspond to the frequency of the laser relaxation oscillation frequency and the stable peaks for the PCF are located at external lengths completely out of phase from those for the conventional feedback. Linear stability analysis using the rate equations is performed and the theoretical background for the stability is also given.
机译:通过基于速率方程的数值模拟,研究了具有相位共轭反馈(PCF)的半导体激光器输出功率的稳定性。我们研究了稳定的固定输出功率演变为周期性振荡时的临界反射率。结果,我们发现临界反射率显示出相对于外腔长度的周期性结构,并且在周期性峰值位置处的稳定性大大增强。将具有PCF的半导体激光器的稳定性和动态性能与传统的光反馈进行了比较。还发现附近峰值的周期对应于激光弛豫振荡频率的频率,并且PCF的稳定峰值位于与常规反馈的相位完全异相的外部长度。进行了使用速率方程的线性稳定性分析,并给出了稳定性的理论背景。

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