首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Diode laser absorption measurements at the H_α-transition in laser induced plasmas on different targets
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Diode laser absorption measurements at the H_α-transition in laser induced plasmas on different targets

机译:在不同目标上的激光诱导等离子体中H_α跃迁处的二极管激光吸收测量

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摘要

The diode laser atomic absorption spectroscopy (DLAAS) technique has been utilized to assess the degree of optical opacity of plasma at the wavelength of the H_α-line. The plasma is produced at atmospheric conditions by focusing a 6 ns Nd: YAG laser pulse at 1.064 μm on different solid target materials including aluminum, iron and titanium as major elements as well as flat pieces of plastic and wood characterized by a high content of hydrogen. The optical depth was investigated as a function of delay times ranging from 0 to 5 μs, and at laser fluences ranging from 7 to 19 J/cm~2, all at a fixed gate time of 1 μs. The results show that the plasma associated with metallic targets is almost optically thin at the H_α-line over all fluences and at delay times >1 us, but rather thick for hydrogen-rich targets (plastic and wood) over all delay times and fluences.
机译:二极管激光原子吸收光谱(DLAAS)技术已被用来评估在H_α线波长下等离子体的光学不透明程度。在大气条件下,通过将1.064μm的6 ns Nd:YAG激光脉冲聚焦在包括铝,铁和钛等主要元素以及以氢含量高为特征的塑料和木材制成的扁平固体靶材上,产生等离子体。研究了光学深度随延迟时间(从0到5μs)和激光通量(从7到19 J / cm〜2)变化的函数,所有这些都是在1μs的固定选通时间下进行的。结果表明,与金属靶材相关的等离子体在所有能量通量和延迟时间> 1 us时,在H_α线处几乎光学上很薄,而对于在所有延迟时间和通量中的富氢靶标(塑料和木材)来说,则相当厚。

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