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Femtosecond laser fabrication of microfluidic channels for organic photonic devices

机译:飞秒激光制造有机光子器件微流控通道

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摘要

We report on innovative application of microchannels with access holes fabricated by femtosecond laser irradiation followed by chemical etching. This technique allows us to demonstrate a novel approach to the achievement of organic photonic devices in which the properties of a conjugated polymer in solution are exploited in a microfluidic configuration to produce an easy-to-integrate photonic device. Filling the microchannel with a diluted polyfluorene solution, we exploit the unique properties of isolated polymeric chains such as ultrafast gain switching (switching response time of 150 fs) with a 100percent on-off ratio. In addition, by dispersing nanoparticles in the polymeric solution we are able to achieve random lasing in the microchannel.
机译:我们报告了微通道的创新应用,该微通道具有通过飞秒激光辐照然后进行化学蚀刻制成的进入孔。这项技术使我们能够证明一种实现有机光子器件的新颖方法,其中溶液中的共轭聚合物的性质以微流体构造加以利用,从而生产出易于集成的光子器件。我们用稀释的聚芴溶液填充微通道,我们利用隔离的聚合物链的独特特性,例如超快速增益转换(开关响应时间为150 fs)和100%的开关比率。另外,通过将纳米颗粒分散在聚合物溶液中,我们能够在微通道中实现随机激光发射。

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