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Femtosecond Laser Structuring of Materials: A Review

机译:飞秒激光材料的结构:审查。

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In this review the interaction between femtosecond laser and matter with emphasis on silicon and some metals have been appraised. For silicon, spikes are produced as a result of interaction in the presence of background gas such as SF6, or H2S with an appropriate background pressure, but spikes are not formed in the presence N2 or air. The formation of the spikes increase the infrared light absorption of silicon to near unity. Interaction of femtosecond laser with metals form periodic surface structures that make the metals exhibit many different morphological characteristics. This processing technique allows the creation of a variety of colors on a metal that ultimately lead to control of its optical properties from UV to terahertz. From the assessment made, the potential of femtosecond laser structuring of materials for cost-effective nano-manufacturing is high.
机译:在这篇综述中,飞秒激光与物质(尤其是硅和某些金属)之间的相互作用得到了评估。对于硅,由于在背景气体(例如SF6或H2S)和适当背景压力下相互作用而产生尖峰,但在N2或空气存在下不会形成尖峰。尖峰的形成将硅的红外光吸收提高到接近统一。飞秒激光与金属的相互作用形成周期性的表面结构,使金属表现出许多不同的形态特征。这种处理技术可以在金属上创建各种颜色,最终导致控制其光学特性(从紫外线到太赫兹)。根据所做的评估,飞秒激光结构化材料具有高性价比的纳米制造潜力。

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