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Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation

Femtosecond laser-induced surface structures upon multiple pulses irradiation are strongly correlated with the pulse number, which in turn significantly affects successive laser-material interactions. By recording the dynamics of femtosecond laser ablation of silicon using time-resolved shadowgraphy...

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Autores principales: Wang, Qingsong, Jiang, Lan, Sun, Jingya, Pan, Changji, Han, Weina, Wang, Guoyan, Wang, Feifei, Zhang, Kaihu, Li, Ming, Lu, Yongfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAAS 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6750105/
https://www.ncbi.nlm.nih.gov/pubmed/31549032
http://dx.doi.org/10.1155/2018/5709748
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author Wang, Qingsong
Jiang, Lan
Sun, Jingya
Pan, Changji
Han, Weina
Wang, Guoyan
Wang, Feifei
Zhang, Kaihu
Li, Ming
Lu, Yongfeng
author_facet Wang, Qingsong
Jiang, Lan
Sun, Jingya
Pan, Changji
Han, Weina
Wang, Guoyan
Wang, Feifei
Zhang, Kaihu
Li, Ming
Lu, Yongfeng
author_sort Wang, Qingsong
collection PubMed
description Femtosecond laser-induced surface structures upon multiple pulses irradiation are strongly correlated with the pulse number, which in turn significantly affects successive laser-material interactions. By recording the dynamics of femtosecond laser ablation of silicon using time-resolved shadowgraphy, here we present direct visualization of the excitation of air plasma induced by the reflected laser during the second pulse irradiation. The interaction of the air plasma and silicon plasma is found to enhance the shockwave expansion induced by silicon ablation in the longitudinal direction, showing anisotropic expansion dynamics in different directions. We further demonstrate the vanishing of air plasma as the pulse number increases because of the generation of a rough surface without light focusing ability. In the scenario, the interaction of air plasma and silicon plasma disappears; the expansion of the silicon plasma and shockwave restores its original characteristic that is dominated by the laser-material coupling. The results show that the excitation of air plasma and the laser-material coupling involved in laser-induced plasma and shockwave expansion are structure mediated and dependent on the pulse number, which is of fundamental importance for deep insight into the nature of laser-material interactions during multiple pulses ablation.
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spelling pubmed-67501052019-09-23 Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation Wang, Qingsong Jiang, Lan Sun, Jingya Pan, Changji Han, Weina Wang, Guoyan Wang, Feifei Zhang, Kaihu Li, Ming Lu, Yongfeng Research (Wash D C) Research Article Femtosecond laser-induced surface structures upon multiple pulses irradiation are strongly correlated with the pulse number, which in turn significantly affects successive laser-material interactions. By recording the dynamics of femtosecond laser ablation of silicon using time-resolved shadowgraphy, here we present direct visualization of the excitation of air plasma induced by the reflected laser during the second pulse irradiation. The interaction of the air plasma and silicon plasma is found to enhance the shockwave expansion induced by silicon ablation in the longitudinal direction, showing anisotropic expansion dynamics in different directions. We further demonstrate the vanishing of air plasma as the pulse number increases because of the generation of a rough surface without light focusing ability. In the scenario, the interaction of air plasma and silicon plasma disappears; the expansion of the silicon plasma and shockwave restores its original characteristic that is dominated by the laser-material coupling. The results show that the excitation of air plasma and the laser-material coupling involved in laser-induced plasma and shockwave expansion are structure mediated and dependent on the pulse number, which is of fundamental importance for deep insight into the nature of laser-material interactions during multiple pulses ablation. AAAS 2018-12-09 /pmc/articles/PMC6750105/ /pubmed/31549032 http://dx.doi.org/10.1155/2018/5709748 Text en Copyright © 2018 Qingsong Wang et al. https://creativecommons.org/licenses/by/4.0/ Exclusive licensee Science and Technology Review Publishing House. Distributed under a Creative Commons Attribution License (CC BY 4.0).
spellingShingle Research Article
Wang, Qingsong
Jiang, Lan
Sun, Jingya
Pan, Changji
Han, Weina
Wang, Guoyan
Wang, Feifei
Zhang, Kaihu
Li, Ming
Lu, Yongfeng
Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation
title Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation
title_full Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation
title_fullStr Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation
title_full_unstemmed Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation
title_short Structure-Mediated Excitation of Air Plasma and Silicon Plasma Expansion in Femtosecond Laser Pulses Ablation
title_sort structure-mediated excitation of air plasma and silicon plasma expansion in femtosecond laser pulses ablation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6750105/
https://www.ncbi.nlm.nih.gov/pubmed/31549032
http://dx.doi.org/10.1155/2018/5709748
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