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A plasmonic random laser tunable through stretching silver nanowires embedded in a flexible substrate

机译:电浆随机激光可调银纳米线嵌入柔性衬底上

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摘要

A mechanically-tunable random laser based on a waveguide-plasmonic scheme has been investigated. This laser can be constructed by spin coating a solution of polydimethylsiloxane doped with the rhodamine 6G organic dye and silver nanowires onto a silicone rubber slab. The excellent overlap of the plasmon resonance peak of the silver nanowires with both the pump wavelength and the photoluminescence spectrum provides the low threshold and tuning properties of the random laser. The random laser wavelength can be tuned from 558 to 565 nm by stretching the soft substrate, which causes reorientation and breakage of the silver nanowires. The polarization state of the random laser can also be changed from random polarization to partial polarization by stretching. The laser performance remains unchanged after the stretching and restoration experiments. These results not only enable easy realization of an ultrathin flexible plasmonic random laser but also provide insights into the mechanisms of three-dimensional plasmonic feedback random lasers.
机译:基于一个mechanically-tunable随机激光waveguide-plasmonic方案已被调查。这个激光可以由旋转涂布聚二甲硅氧烷溶液掺杂若丹明6 g有机染料和银纳米线到一个硅橡胶板。等离子体共振峰的重叠银纳米线与泵的波长光致发光光谱提供了低阈值和调优的属性是随机的激光。从558年到565海里通过伸展柔软导致重新定位和衬底破碎的银纳米线。随机激光的偏振状态还可以从随机偏振部分被改变通过拉伸极化。拉伸和后保持不变修复实验。可轻松实现一个超薄灵活电浆随机激光器还提供见解机制的三维的电浆反馈随机激光。

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