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Time-dependent theory for random lasers in the presence of an inhomogeneous broadened gain medium such as PbSe quantum dots

机译:存在非均匀展宽增益介质(例如PbSe量子点)的随机激光器的时变理论

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Time-dependent model is presented to simulate random lasers in the presence of an inhomogeneous gain medium. PbSe quantum dots (QDs) with an arbitrary size distribution are treated as an inhomogeneous gain medium. By introducing inhomogeneity of the PbSe QDs in polarization, rate, and Maxwell's equations, our model is constructed for a one-dimensional disordered system. By employing the finite difference time-domain method, the governing equations are numerically solved and lasing spectra and spatial distribution of the electric field are calculated. The effect of increasing the pumping rate on the laser characteristics is investigated. The results show that the number of lasing modes and their intensities increase with pumping rate. It is also demonstrated that the emission spectra depend on the standard deviation of the Gaussian distribution function. Increasing the standard deviation leads to reduction of the laser intensity.
机译:提出了基于时间的模型来模拟在不均匀增益介质存在下的随机激光。具有任意大小分布的PbSe量子点(QD)被视为非均匀增益介质。通过在极化,速率和麦克斯韦方程中引入PbSe量子点的不均匀性,我们的模型是为一维无序系统构建的。采用时域有限差分法,对控制方程进行了数值求解,计算了激光光谱和电场的空间分布。研究了提高抽运速率对激光特性的影响。结果表明,激射模态的数量和强度随抽速的增加而增加。还证明了发射光谱取决于高斯分布函数的标准偏差。标准偏差的增加导致激光强度的降低。

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