激光器
烧蚀
材料科学
飞秒
激光烧蚀
超短脉冲
光学
光谱学
辐照
反冲
光电子学
物理
原子物理学
量子力学
航空航天工程
核物理学
工程类
作者
Minok Park,Yueran Gu,Xianglei Mao,Costas P. Grigoropoulos,Vassilia Zorba
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2023-03-22
卷期号:9 (12): eadf6397-eadf6397
被引量:119
标识
DOI:10.1126/sciadv.adf6397
摘要
Gigahertz (GHz) femtosecond (fs) lasers have opened possibilities for enhancing and controlling the laser machining quality to engineer the physicochemical properties of materials. However, fundamental understanding of laser-material interactions by GHz fs laser has remained unsolved due to the complexity of associated ablation dynamics. Here, we study the ablation dynamics of copper (Cu) by GHz fs bursts using in situ multimodal diagnostics, time-resolved scattering imaging, emission imaging, and emission spectroscopy. A combination of probing techniques reveals that GHz fs bursts rapidly remove molten Cu from the irradiated spot due to the recoil pressure exerted by following fs pulses. Material ejection essentially stops right after the burst irradiation due to the limited amount of remnant matter, combined with the suppressed heat conduction into the target material. Our work provides insights into the complex ablation mechanisms incurred by GHz fs bursts, which are critical in selecting optimal laser conditions in cross-cutting processing, micro/nano-fabrication, and spectroscopy applications.
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