随机激光透视激光介质

H. Kisov, G. Dyankov, V. Strijkova, B. Georgieva, V. Serbezov
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引用次数: 0

摘要

随机激光器是一种基于无序的新型激光光源,具有广泛的光子学应用。本文研究了以环氧树脂为基体,用不同的罗丹明6G和罗丹明b二元溶液溶解的新型无序介质的光学性质。这些染料的选择与它们在激光物理中的广泛应用有关。对荧光光谱依赖性进行了详细的研究。自发辐射非常强烈,遵循染料透射的光谱依赖性,超过750nm。Nd:YAG激光的二次谐波脉冲为10ns,激光介质阈值为1.6 mJ,半峰全宽(FWHM)约为1.5 nm。介质的斜率效率为16%。对无谐振腔的激光产生进行了研究,观察到597 nm处的激光发射。这一事实可以用介质提供的随机激光来解释。这与所记录的介质固有的强散射有很好的关系和一致。在我们的实验中没有使用额外的散射中心,如ZnO纳米棒或Ag, Al, Al2O3, TiO2团聚体等。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Perspective laser medium for random lasing
Random lasers are a novel disorder-based laser light source with many photonics applications. In the present work we study the optical properties of a new unordered medium consisted of an epoxy resin as matrix with dissolved different binary solutions of Rhodamine 6G and Rhodamine B. The choice of these dyes is related to their great application in laser physics. A detailed study of the spectral dependence of fluorescence is performed. The spontaneous emission is very intensive and follows the spectral dependence of dyes transmission and exceeds 750 nm. The threshold of the laser medium is 1.6 mJ for 10 ns pulse at second harmonics of Nd:YAG laser, and full width at half maximum (FWHM) is around 1.5 nm. Slope efficiency of the medium is 16%. The laser generation without resonator was studied also and lasing emission at 597 nm was observed. The fact can be explained by random lasing provided by the medium. This is in good relation and in accordance with the intensive scattering inherent to the medium which is registered. Not used additional scatter centers such as ZnO nanorods or Ag, Al, Al2O3, TiO2 agglomerates and others in our experiments.
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