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Implications of how the linewidth enhancement factor is introduced on the Lang and Kobayashi model

机译:Lang和Kobayashi模型中引入线宽增强因子的含义

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The implications of how the linewidth enhancement factor is introduced on the Lang and Kobayashi model of a single-mode semiconductor laser with optical feedback are numerically investigated. /spl alpha/ is introduced on the model in the rate equation for the complex electric field by performing an expansion of the frequency of the laser mode around its threshold value /spl omega//sub 0/. Two different expansions have led to two different sets of Lang and Kobayashi equations; in the first set, the intensity reduction of the optical gain G is taken into account in the linearization of /spl omega/, while in the second set it is neglected. Although in the literature the investigations of semiconductor lasers with optical feedback have been based on either of these sets, they are equal only when a linear form for G is assumed. In this paper, it is shown that on which set of Lang and Kobayashi equations the investigations are based is an important fact to take into account when interpreting the results, since it is shown that if the nonlinear gain is considered, the dynamics predicted by the two sets are very different. In particular, it is shown that behavior of the external cavity modes and the stability properties of the attractors differ greatly when the gain saturation coefficient /spl epsi/ is varied.
机译:数值研究了如何在具有光反馈的单模半导体激光器的Lang和Kobayashi模型上引入线宽增强因子。通过在其阈值/ spl omega // sub 0 /附近执行激光模式的频率扩展,将/ spl alpha /引入到模型中的复电场速率方程中。两种不同的展开导致了Lang和Kobayashi方程的两组不同。在第一组中,在/splω/的线性化中考虑了光学增益G的强度降低,而在第二组中则忽略了它。尽管在文献中对具有光反馈的半导体激光器的研究都是基于这两个组中的任一个,但仅当假定G为线性形式时,它们才是相等的。在本文中,表明研究是基于哪组Lang和Kobayashi方程,是解释结果时要考虑的重要事实,因为这表明,如果考虑了非线性增益,则预测的动力学将取决于非线性增益。两组非常不同。特别地,示出了当增益饱和系数/ spl epsi /改变时,外腔模式的行为和吸引子的稳定性性质大大不同。

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