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Random lasing and Coherent Back Scattering Study in Rhodamine 6G doped Polymer Optical Fiber (POF) Particles

机译:罗丹明6G掺杂聚合物光纤(POF)颗粒中的随机激光和相干散射研究

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We demonstrate coherent back scattering and random lasing from an active random media of Rhodamine 6G doped polymer optical fiber particles on different sizes. Narrow emission modes are observed experimentally over a broad range of scattering strengths without requiring optical cavities. The particle-size dependence of transport mean free path, which measured from coherent backscattering measurements. Since the scattering mean free path is less than the emission wavelength, recurrent light scattering arises and provides coherent feedback for lasing. Laser emission from the sample observed in all directions. This observation also provides direct evidence for the existence of recurrent scattering of light. The lasing threshold intensity depends on the excitation volume, also the decrease of the lasing threshold at large particle size. The feedback for lasing originates mainly from backscattering of particles near the boundaries of the pumped region. Here, the lasing threshold depends strongly on the size distribution, dye concentration and intensity of excitation in the ensemble.
机译:我们从不同尺寸的罗丹明6g掺杂聚合物光纤颗粒的有源随机介质上展示了连贯的后散射和随机激光。在不需要光学空腔的情况下通过实验在广泛的散射强度上进行实验观察窄发射模式。运输的粒度依赖性是从相干反向散射测量测量的自由路径。由于散射平均自由路径小于发光波长,因此产生复发光散射并提供激光的相干反馈。从所有方向观察到的样本激光发射。该观察结果还提供了存在反复散射光的直接证据。激光阈值强度取决于激发体积,也是在大粒径下的激光阈值的降低。激光的反馈主要来自泵浦区域的边界附近的粒子的反向散射。这里,激光阈值强烈取决于集合中的尺寸分布,染料浓度和激发强度。

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