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首页> 外文期刊>Photonics >Ultrafast Laser Pulses for Structuring Materials at Micro/Nano Scale: From Waveguides to Superhydrophobic Surfaces
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Ultrafast Laser Pulses for Structuring Materials at Micro/Nano Scale: From Waveguides to Superhydrophobic Surfaces

机译:用于微米/纳米级结构材料的超快激光脉冲:从波导到超疏水表面

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The current demand for fabricating optical and photonic devices displaying high performance, using low-cost and time-saving methods, prompts femtosecond (fs)-laser processing as a promising methodology. High and low repetition femtosecond lasers enable surface and/or bulk modification of distinct materials, which can be used for applications ranging from optical waveguides to superhydrophobic surfaces. Herein, some fundamental aspects of fs-laser processing of materials, as well as the basics of their most common experimental apparatuses, are introduced. A survey of results on polymer fs-laser processing, resulting in 3D waveguides, electroluminescent structures and active hybrid-microstructures for luminescence or biological microenvironments is presented. Similarly, results of fs-laser processing on glasses, gold and silicon to produce waveguides containing metallic nanoparticles, analytical chemical sensors and surface with modified features, respectively, are also described. The complexity of fs-laser micromachining involves precise control of material properties, pushing ultrafast laser processing as an advanced technique for microano devices.
机译:目前,使用低成本和省时的方法来制造具有高性能的光学和光子器件的需求促使飞秒(fs)激光加工成为一种有前途的方法。高和低重复飞秒激光可对不同材料进行表面和/或整体修饰,可用于从光波导到超疏水表面的各种应用。本文介绍了材料的fs激光处理的一些基本方面,以及最常见的实验设备的基础。提出了对聚合物fs激光处理结果的调查,该结果导致了3D波导,电致发光结构以及用于发光或生物微环境的有源混合微结构。类似地,还描述了在玻璃,金和硅上进行fs激光处理以分别生成包含金属纳米粒子,分析化学传感器和具有修饰特征的表面的结果。 fs激光微加工的复杂性包括对材料特性的精确控制,从而推动超快激光加工成为微纳米器件的先进技术。

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