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Random lasing in dye-doped polymer random media with a bubble structure

机译:染料掺杂聚合物随机介质随机激光,泡沫结构

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We experimentally investigate random laser (RL) emission from dye-doped polymer random media with inho-mogeneously distributed scatterers. A random structure, which we call a bubble structure (BS), is realized by using nonscattering spacer particles randomly distributed in a gain medium. The experimental results show that the bubble-structured RL that incorporates an appropriate amount of spacer particles exhibits a higher spectral peak and a larger slope efficiency than conventional RLs. The highest peak intensity is observed when the size variation of spacer particles is maximized. Furthermore, an analysis of laser modes reveals that an increase in the spectral peak intensity can be partly attributed to the mode selection properties of the BS. (C) 2017 Optical Society of America
机译:我们通过INOH-MOGENENELY分布的散射酯实验从染料掺杂的聚合物随机介质中探讨随机激光(RL)排放。 通过使用在增益介质中随机分布的非电动机间隔颗粒来实现我们称呼气泡结构(BS)的随机结构。 实验结果表明,包含适量的间隔物颗粒的气泡结构R1表现出比常规RLS更高的光谱峰值和更大的斜率效率。 当间隔颗粒的尺寸变化最大化时,观察到最高峰值强度。 此外,激光模式的分析揭示了光谱峰强度的增加可以部分地归因于BS的模式选择特性。 (c)2017年光学学会

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