首页> 外文期刊>Journal of Russian laser research >ENHANCEMENT OF RANDOM LASER PROPERTIES ON SOLID POLYMER FILMS BY INCREASING SCATTERING EFFECT
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ENHANCEMENT OF RANDOM LASER PROPERTIES ON SOLID POLYMER FILMS BY INCREASING SCATTERING EFFECT

机译:通过增加散射效应来增强固体聚合物薄膜的随机激光性能

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摘要

We study the properties of solid-based random lasers by observing spectral emission shape, emission intensity, emission line width, and lasing threshold. Random lasers based on solid polymer film are prepared by combining titania nanoparticles with rhodamine 640 in poly(vinyl alcohol) (PVA) water solution. We compare samples with and without scatterers. Adding nanoparticles to the samples narrows the emission spectrum, and the lasing threshold can be observed. The amount of titanium dioxide (TiO2) or titania nanoparticles is varied and affects the properties of random lasers. The spectral emission line width becomes narrower, and the lasing threshold decreases when the amount of titania increases. Results obtained show that the properties of solid-based random lasers can be improved by increasing scattering, which enhances the feedback mechanism. The enhanced properties of random lasers are very useful for creating a reliable optical device for future applications in medical and biosensing fields.
机译:我们通过观察光谱发射形状,发射强度,发射线宽和激光阈值来研究基于固体的随机激光器的特性。通过将二氧化钛纳米粒子与若丹明640混合在聚乙烯醇(PVA)水溶液中来制备基于固体聚合物薄膜的随机激光器。我们比较有无散射体的样品。向样品中添加纳米颗粒会缩小发射光谱,并且可以观察到激光阈值。二氧化钛(TiO2)或二氧化钛纳米颗粒的数量会发生变化,并影响随机激光的性能。当二氧化钛的量增加时,光谱发射线的宽度变窄,并且激光阈值降低。获得的结果表明,通过增加散射可以改善基于固体的随机激光器的性能,从而增强了反馈机制。随机激光器的增强特性对于为医疗和生物传感领域的未来应用创建可靠的光学设备非常有用。

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