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Topical Review | Open Access

Ultrafast dynamics observation during femtosecond laser-material interaction

Baoshan Guo1 Jingya Sun1YongFeng Lu2Lan Jiang1 
Laser Micro/Nano Fabrication Laboratory, School of Mechanical Engineering, Beijing Institute of Technology, Beijing, 100081, People’s Republic of China
Department of Electrical and Computer Engineering, University of Nebraska-Lincoln, Lincoln, NE 68588-0511, United States of America
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Abstract

Femtosecond laser technology has attracted significant attention from the viewpoints of fundamental and application; especially femtosecond laser processing materials present the unique mechanism of laser-material interaction. Under the extreme nonequilibrium conditions imposed by femtosecond laser irradiation, many fundamental questions concerning the physical origin of the material removal process remain unanswered. In this review, cutting-edge ultrafast dynamic observation techniques for investigating the fundamental questions, including time-resolved pump-probe shadowgraphy, ultrafast continuous optical imaging, and four-dimensional ultrafast scanning electron microscopy, are comprehensively surveyed. Each technique is described in depth, beginning with its basic principle, followed by a description of its representative applications in laser-material interaction and its strengths and limitations. The consideration of temporal and spatial resolutions and panoramic measurement at different scales are two major challenges. Hence, the prospects for technical advancement in this field are discussed finally.

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International Journal of Extreme Manufacturing
Pages 032004-032004

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Cite this article:
Guo B, Sun J, Lu Y, et al. Ultrafast dynamics observation during femtosecond laser-material interaction. International Journal of Extreme Manufacturing, 2019, 1(3): 032004. https://doi.org/10.1088/2631-7990/ab3a24

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Received: 18 July 2019
Revised: 06 August 2019
Accepted: 10 August 2019
Published: 20 September 2019
© 2019 The Author(s).

Original content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.