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Fabrication of Micro/Nano Structures on Metals by Femtosecond Laser Micromachining

机译:飞秒激光微加工在金属上制备纳米微结构

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Femtosecond laser micromachining has emerged in recent years as a new technique for microano structure fabrication because of its applicability to virtually all kinds of materials in an easy one-step process that is scalable. In the past, much research on femtosecond laser micromachining was carried out to understand the complex ablation mechanism, whereas recent works are mostly concerned with the fabrication of surface structures because of their numerous possible applications. The state-of-the-art knowledge on the fabrication of these structures on metals with direct femtosecond laser micromachining is reviewed in this article. The effect of various parameters, such as fluence, number of pulses, laser beam polarization, wavelength, incident angle, scan velocity, number of scans, and environment, on the formation of different structures is discussed in detail wherever possible. Furthermore, a guideline for surface structures optimization is provided. The authors’ experimental work on laser-inscribed regular pattern fabrication is presented to give a complete picture of micromachining processes. Finally, possible applications of laser-machined surface structures in different fields are briefly reviewed.
机译:飞秒激光微加工作为一种用于微/纳米结构制造的新技术,近年来已经出现,这是因为飞秒激光微加工可通过一种可扩展的简单一步法应用于几乎所有类型的材料。过去,对飞秒激光微加工进行了大量研究以了解复杂的烧蚀机理,而近来的工作因其可能的应用而主要涉及表面结构的制造。本文回顾了直接飞秒激光微加工在金属上制造这些结构的最新知识。尽可能详细地讨论各种参数(例如通量,脉冲数,激光束偏振,波长,入射角,扫描速度,扫描次数和环境)对形成不同结构的影响。此外,提供了用于表面结构优化的指南。提出了作者在激光刻划规则图案制作方面的实验工作,以全面了解微加工过程。最后,简要回顾了激光加工表面结构在不同领域的可能应用。

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