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用于高纵横比结构的超快激光加工

Ultrafast Laser Processing for High-Aspect-Ratio Structures.

作者信息

Qin Muyang, Zhao Xinjing, Fan Hanyue, Leng Ruizhe, Yu Yanhao, Li Aiwu, Gao Bingrong

机构信息

State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China.

出版信息

Nanomaterials (Basel). 2024 Aug 31;14(17):1428. doi: 10.3390/nano14171428.

Abstract

Over the past few decades, remarkable breakthroughs and progress have been achieved in ultrafast laser processing technology. Notably, the remarkable high-aspect-ratio processing capabilities of ultrafast lasers have garnered significant attention to meet the stringent performance and structural requirements of materials in specific applications. Consequently, high-aspect-ratio microstructure processing relying on nonlinear effects constitutes an indispensable aspect of this field. In the paper, we review the new features and physical mechanisms underlying ultrafast laser processing technology. It delves into the principles and research achievements of ultrafast laser-based high-aspect-ratio microstructure processing, with a particular emphasis on two pivotal technologies: filamentation processing and Bessel-like beam processing. Furthermore, the current challenges and future prospects for achieving both high precision and high aspect ratios simultaneously are discussed, aiming to provide insights and directions for the further advancement of high-aspect-ratio processing.

摘要

在过去几十年中,超快激光加工技术取得了显著的突破和进展。值得注意的是,超快激光卓越的高纵横比加工能力已引起了广泛关注,以满足特定应用中材料严格的性能和结构要求。因此,基于非线性效应的高纵横比微结构加工构成了该领域不可或缺的一个方面。在本文中,我们回顾了超快激光加工技术的新特性和物理机制。深入探讨了基于超快激光的高纵横比微结构加工的原理和研究成果,特别强调了两项关键技术:丝状化加工和类贝塞尔光束加工。此外,还讨论了同时实现高精度和高纵横比目前面临的挑战和未来前景,旨在为高纵横比加工的进一步发展提供见解和方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60f5/11396894/bc2009a9a05c/nanomaterials-14-01428-g001.jpg

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