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Flexible and tensile microporous polymer fibers for wavelength-tunable random lasing

机译:灵活和拉伸微孔聚合物纤维wavelength-tunable随机激光

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摘要

Polymer micro-/nanofibers, due to their low-cost and mechanical flexibility, are attractive building blocks for developing lightweight and flexible optical circuits. They are also versatile photonic materials for making various optical resonators and lasers, such as microrings, networks and random lasers. In particular, for random lasing architectures, the demonstrations to-date have mainly relied on fiber bundles whose properties are hard to tune post-fabrication. Here, we demonstrate the successful implementation of an inverted photonic glass structure with monodisperse pores of 1.28 mu m into polymer fibers with diameter ranging from 10 to 60 mu m. By doping organic dye molecules into this structure, individual fibers can sustain random lasing under optical pulse excitation. The dependence of lasing characteristics, including lasing spectrum and lasing threshold on fiber diameter are investigated. It is found that the lasing emission red-shifts and the threshold decreases with increasing fiber diameter. Furthermore, owing to the mechanical flexibility, the lasing properties can be dynamically changed upon stretching, leading to a wavelength-tunability of 5.5 nm. Our work provides a novel architecture for random lasers which has the potential for lasing tunability and optical sensing.
机译:聚合物微/纳米纤维,由于他们的低成本和机械的灵活性,颇具吸引力发展轻和的构建块灵活的光学电路。制作各种多功能光子材料光学谐振器和激光等microrings,网络和随机激光。随机激光架构的示威活动迄今为止主要依赖纤维束的性质很难调整post-fabrication。成功实现倒置的光子1.28玻璃结构的单分散的毛孔μm为聚合物纤维直径等从10到60μm,通过掺杂有机染料分子结构,单个纤维可以维持随机激光光脉冲下激发。特征,包括激光光谱和激光阈值对纤维直径调查。发射红移和阈值减少随着纤维直径。由于机械的灵活性,激光属性可以动态地改变拉伸,导致wavelength-tunability5.5纳米。对随机激光的潜力激光可调谐性和光学传感。

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