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Recent developments on micro ablation of glass materials using excimer lasers

机译:使用准分子激光对玻璃材料进行微烧蚀的最新进展

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摘要

For many years, the development of effective laser machining techniques for making glass-based microcomponents and devices has been a critical factor in the birth of new photonic and biomedical microsystems. In this article, the characteristics and abilities of excimer lasers for micromachining of a wide range of glass materials are reviewed and studied. Following the introduction, the special features of excimer lasers are discussed. The typical micromachining system used for glass materials is presented. Then, the fundamental micromachining parameters and the associated morphologies of machined surfaces are evaluated. The approaches by controlling the ablation rate for making the curve surfaces are specifically formulated. Although a wide range of commercially available glasses is covered in this article, two types of the most widely used glasses, borosilicate glass and fused silica, are thoroughly examined to illustrate the complexity in micromachining the glass materials. The procedures to machine single, arrayed, curved microstructures are described. The utilizations of these procedures for making microneedles, optical waveguides, submicron grating, and microlenses are specifically demonstrated. Finally, recommendations for future efforts are presented.
机译:多年来,开发有效的激光加工技术以制造基于玻璃的微组件和设备一直是新的光子和生物医学微系统诞生的关键因素。在本文中,对用于多种玻璃材料微加工的准分子激光器的特性和能力进行了综述和研究。介绍之后,讨论了准分子激光器的特殊功能。介绍了用于玻璃材料的典型微加工系统。然后,评估基本的微加工参数和加工表面的相关形态。具体地规定了通过控制用于形成曲面的烧蚀速率的方法。尽管本文涵盖了各种各样的市售玻璃,但是已经对两种最广泛使用的玻璃(硼硅酸盐玻璃和熔融石英)进行了彻底检查,以说明微加工玻璃材料的复杂性。描述了加工单个,排列的,弯曲的微结构的过程。这些程序用于制造微针,光波导,亚微米光栅和微透镜的用途得到了具体说明。最后,提出了对未来工作的建议。

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