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Statistics of quality factors in three-dimensional disordered magneto-optical systems and its applications to random lasers

机译:三维无序磁光系统中品质因数的统计及其在随机激光器中的应用

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We have investigated the distribution of quality factors P(Q) of three-dimensional disordered systems composed of pointlike magneto-optical scatterers under the influence of an external magnetic field, both in the diffusive and localized regimes of light transport. P(Q) is shown to exhibit the same behavior of the distribution of delay times obtained in previous studies within different models to describe wave propagation in random media, such as the Anderson and the kicked rotator models. From the analysis of P(Q) we conclude that exponentially localized (and prelocalized) electromagnetic quasimodes depend on time-reversal symmetry. We suggest that this dependence could be explored in the development of a magneto-optical random laser, in which the threshold could be tuned by the application of a magnetic field. We also argue that such laser could be used to experimentally test if prelocalized modes are at the controversial origin of random lasing with coherent feedback in diffusive systems.
机译:我们研究了由点状磁光散射体组成的三维无序系统在外部磁场的影响下在光传输的扩散和局部状态下的质量因子P(Q)的分布。 P(Q)被证明在不同模型中表现出先前研究中获得的延迟时间分布的相同行为,这些模型描述了波在随机介质(例如安德森和踢转旋转器模型)中的传播。通过对P(Q)的分析,我们得出结论,指数局部化(和预局部化)的电磁准模取决于时间反转对称性。我们建议可以在磁光随机激光器的开发中探索这种依赖性,在该激光器中,可以通过施加磁场来调整阈值。我们还认为,这种激光可以用于实验测试预定位模式是否是在扩散系统中具有相干反馈的随机激光的有争议起源。

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