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使用飞秒激光进行玻璃微结构的3D制造。

3D Manufacturing of Glass Microstructures Using Femtosecond Laser.

作者信息

Butkutė Agnė, Jonušauskas Linas

机构信息

Femtika Ltd., Saulėtekio Ave. 15, LT-10224 Vilnius, Lithuania.

Laser Research Center, Vilnius University, Saulėtekio Ave. 10, LT-10223 Vilnius, Lithuania.

出版信息

Micromachines (Basel). 2021 Apr 28;12(5):499. doi: 10.3390/mi12050499.

Abstract

The rapid expansion of femtosecond (fs) laser technology brought previously unavailable capabilities to laser material processing. One of the areas which benefited the most due to these advances was the 3D processing of transparent dielectrics, namely glasses and crystals. This review is dedicated to overviewing the significant advances in the field. First, the underlying physical mechanism of material interaction with ultrashort pulses is discussed, highlighting how it can be exploited for volumetric, high-precision 3D processing. Next, three distinct transparent material modification types are introduced, fundamental differences between them are explained, possible applications are highlighted. It is shown that, due to the flexibility of fs pulse fabrication, an array of structures can be produced, starting with nanophotonic elements like integrated waveguides and photonic crystals, ending with a cm-scale microfluidic system with micro-precision integrated elements. Possible limitations to each processing regime as well as how these could be overcome are discussed. Further directions for the field development are highlighted, taking into account how it could synergize with other fs-laser-based manufacturing techniques.

摘要

飞秒(fs)激光技术的迅速发展为激光材料加工带来了前所未有的能力。由于这些进展而受益最大的领域之一是透明电介质(即玻璃和晶体)的三维加工。本综述致力于概述该领域的重大进展。首先,讨论了材料与超短脉冲相互作用的潜在物理机制,强调了如何将其用于体积高精度三维加工。接下来,介绍了三种不同的透明材料改性类型,解释了它们之间的基本差异,并突出了可能的应用。结果表明,由于飞秒脉冲制造的灵活性,可以制造一系列结构,从集成波导和光子晶体等纳米光子元件开始,到具有微精密集成元件的厘米级微流体系统结束。讨论了每种加工方式可能存在的局限性以及如何克服这些局限性。考虑到该领域如何与其他基于飞秒激光的制造技术协同发展,突出了该领域的进一步发展方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b688/8145601/4399e69a1be0/micromachines-12-00499-g001.jpg

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