首页> 外文会议>Conference on Complex Mediums V: Light and Complexity; 20040804-20040805; Denver,CO; US >Study of the physical origin of a resonant feedback in random lasers
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Study of the physical origin of a resonant feedback in random lasers

机译:随机激光器中共振反馈的物理起源研究

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摘要

By expanding the spatial distribution of a dielectric constant in random media into Fourier series, we analyze the assumption that the resonant feedback is provided by the presence of components with spatial periods satisfying the condition of the Bragg diffraction. Numerical simulations of random media allow us to predict specific features of eigenfrequencies of lasing modes, which are similar to those obtained in the literature from the numerical solution of the Maxwell equations. Thus, a plausible explanation of the physical nature of frequency selection in random lasers is revealed. Furthermore, using a simplified description of the Bragg feedback, we show why the threshold gain decreases with the increase in the sizes of the active region.
机译:通过将介电常数在随机介质中的空间分布扩展为傅立叶级数,我们分析了这样的假设,即谐振反馈是由具有满足布拉格衍射条件的空间周期的分量的存在提供的。随机介质的数值模拟使我们能够预测激光模式特征频率的特定特征,这些特征与文献中从麦克斯韦方程组的数值解获得的特征相似。因此,揭示了对随机激光器中频率选择的物理性质的合理解释。此外,使用布拉格反馈的简化描述,我们说明了为什么阈值增益会随有源区大小的增加而减小。

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