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Influence of electron dynamics on the enhancement of double-pulse femtosecond laser-induced breakdown spectroscopy of fused silica

机译:电子动力学对熔融二氧化硅双脉冲飞秒激光诱导的双脉冲飞次激光击穿光谱的影响

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摘要

Femtosecond laser pulse train induced breakdown of fused silica was studied by investigating its plasma emission and the ablated crater morphology. It was demonstrated that the electron dynamics in the ablated fused silica play a dominant role in the emission intensity of induced plasma and the volume of material removal, corresponding to the evolution of free-electron, self-trapped excitons, and the phase change of the fused silica left over by the first pulse. For a fluence of 11 J/cm(2), the maximum plasma intensity of double-pulse irradiation at an interpulse delay of 120 ps was about 35 times stronger than that of a single-pulse, while the ablated crater was reduced by 27% in volume. The ionization of slow plume component generated by the first pulse was found to be the main reason for the extremely high intensity enhancement for an interpulse delay of over 10 ps. The results serve as a route to simultaneously increase the spatial resolution and plasma intensity in laser-induced breakdown spectroscopy of dielectrics. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过研究其等离子体排放和消融的火山口形态来研究Femtosecond激光脉冲串诱导熔融二氧化硅的分解。结果证明,消融熔融二氧化硅中的电子动力学在诱导血浆的发光强度和材料去除量的发射强度中起显着作用,对应于自由电子,自捕集激子的演变和相变的相变由第一脉冲留下的熔融二氧化硅。对于11J / cm(2)的流量,瞳孔间延迟的双脉冲辐射的最大等离子体强度比单脉冲的延迟大约35倍,而消融的火山口减少了27%体积。发现由第一脉冲产生的慢速羽流量的电离是极高强度增强的主要原因,对于超过10ps的间隔延迟的主要原因。结果用作同时增加激光诱导的电介质击穿光谱中的空间分辨率和等离子体强度的途径。 (c)2018 Elsevier B.v.保留所有权利。

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