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Double pulse laser-induced plasmas on W and Al by ps-LIBS: Focus on the plasma-second pulse interaction

机译:PS-LIBS上W和A1上的双脉冲激光诱导等离子体:专注于等离子体 - 第二脉冲交互

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摘要

The LIBS (laser-induced breakdown spectroscopy) method can be implemented to determine the multi-elemental composition of solid samples. Unfortunately, the precision of the usual LIBS configuration (single pulse) is rather low for light elements in metallic matrices. The double pulse configuration can help to overcome this difficulty. Indeed, the electron temperature and density are significantly increased by the second pulse absorbed by the plasma produced by the first pulse which leads to a higher signal-to-noise ratio. The present paper reports preliminary results in double pulse configuration on fusion-relevant materials, i.e. aluminum (considered as a beryllium surrogate) and tunsgten, in the perspective of the test of this technique to measure in situ the hydrogen isotopes concentration of the divertor and the first wall of an ITER-like tokamak.The plasma spectroscopic analysis is performed to derive the gain in electron density reached by the absorption of the second pulse. In parallel, the spectral absorptivity of the plasma regarding the second pulse is determined to correlate the electron density dynamics to the energy deposit. The absorption by the plasma of the second pulse is then quantified at the atomic and macroscopic scales.
机译:可以实现LIB(激光诱导的击穿光谱)方法以确定固体样品的多元素组成。遗憾的是,对于金属矩阵中的光元件,通常的Libs配置(单脉冲)的精度相当较低。双脉冲配置可以有助于克服这种困难。实际上,通过由第一脉冲产生的等离子体吸收的第二脉冲,电子温度和密度显着增加,这导致了更高的信噪比。本文报告了融合相关材料上的双脉冲配置的初步结果,即铝(被认为是铍替代)和Tunsgten,以这种技术的测试,以原位测量转轴的氢同位素浓度和第一墙的浸渍托卡马克。进行等离子体光谱分析以导出通过吸收第二脉冲的电子密度的增益。并行地,确定关于第二脉冲的等离子体的光谱吸收率,以将电子密度动力学与能量沉积相关联。然后在原子和宏观尺度上量化第二脉冲的等离子体的吸收。

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