FOM-Institute for Atomic and Molecular Physics (AMOLF), Science Park 104, 1098 XG Amsterdam, The Netherlands.
Opt Lett. 2010 Sep 15;35(18):3063-5. doi: 10.1364/OL.35.003063.
We study experimentally as well as numerically the transport and generation of light in multiple scattering media with optical gain. By imaging the spatial distribution of light escaping from the side of the sample, the propagation depth is analyzed. Far below and far above random laser threshold, the spatial profile of emission light is independent of pump intensity, while around threshold, the spatial distribution of emission light changes profoundly. The experimental results are explained by interpreting the numerical solutions to a set of coupled time-dependent diffusion equations on a nonuniform spatial grid. Our studies provide a new and easily accessible method for observing the random laser threshold.
我们通过实验和数值模拟研究了具有光学增益的多散射介质中的光传输和产生。通过对从样品侧面逸出的光的空间分布进行成像,分析了传播深度。在远低于和远高于随机激光阈值的情况下,发射光的空间分布与泵浦强度无关,而在阈值附近,发射光的空间分布则发生了深刻的变化。通过在非均匀空间网格上对一组时变扩散方程的数值解进行解释,我们对实验结果进行了说明。我们的研究为观察随机激光阈值提供了一种新的、易于实现的方法。