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Random laser based on waveguided plasmonic gain channels

机译:基于波导等离激元增益通道的随机激光器

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摘要

A waveguide-plasmonic scheme is constructed by coating the matrix of randomly distributed gold nanoisland structures with a layer of dye-doped polymer, which provides strong feedback or gain channels for the emission from the dye molecules and enables successful running of a random laser. Excellent overlap of the plasmonic resonance of the gold nanoislands with the photoluminescence spectrum of the dye molecules and the strong confinement mechanism provided by the active waveguide layer are the key essentials for the narrow-band and low-threshold operation of this random laser. This kind of feedback configuration potentially enables directional output from such random lasers. The flexible solution-processable fabrication of the plasmonic gold nanostructures not only enables easy realization of such a random laser but also provides mechanisms for the tuning and multicolor operation of the laser emission.
机译:通过在随机分布的金纳米岛结构的基质上覆盖一层染料掺杂的聚合物,可以构建波导等离子体方案,这为染料分子的发射提供了强大的反馈或增益通道,并使随机激光器能够成功运行。金纳米岛的等离子共振与染料分子的光致发光光谱的良好重叠以及有源波导层提供的强限制机制是该随机激光器窄带和低阈值操作的关键要素。这种反馈配置有可能实现从此类随机激光器的定向输出。等离子体金纳米结构的灵活的可溶液处理的制造不仅能够轻松实现这种随机激光器,而且还提供了用于激光发射的调谐和多色操作的机制。

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