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Determination of excitation temperature in laser-induced plasmas using columnar density Saha-Boltzmann plot

机译:使用柱状密度Saha-Boltzmann图确定激光诱导等离子体中的激发温度

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摘要

class="kwd-title">Keywords: Plasma, Spectroscopy, LIBS, Excitation temperature, Self-absorption, Saha-Boltzmann plot class="head no_bottom_margin" id="ab015title">AbstractIn exploiting the analytical capabilities of plasma-based spectroscopy method, the evaluation of plasma parameters, particularly the plasma temperature, is a crucial step. In this work, a modified Saha-Boltzmann plot, which uses the columnar densities of atomic and ionic ground levels, is utilized to calculate the plasma temperature in a laser-induced plasma from an aluminum alloy target. The columnar densities are here calculated by quantifying the self-absorption of resonance lines. It is demonstrated that this is a promising method for accurate determination of plasma temperature. To validate the capability of this technique, plasma emission is measured at different gate delay times. For each delay, excitation temperature is calculated both by the conventional Saha-Boltzmann plot (by using the excited states) and by exploiting the new Columnar Density Saha–Boltzmann (CD-SB) plot. The results suggest that at later times of the plasma evolution, the CD-SB plot can be more suitable for the determination of plasma temperature than conventional Saha-Boltzmann plot. These findings provide a new approach for physical characterization of plasmas and give access to a wealth of information about the state of plasma.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:等离子,光谱,LIBS,激发温度,自吸收,Saha-Boltzmann图 class =摘要:在利用基于等离子体的光谱法的分析能力时,评估等离子体参数,尤其是等离子体温度是至关重要的一步。在这项工作中,利用原子和离子基态水平的柱状密度的修改后的Saha-Boltzmann图来计算铝合金靶材在激光诱导等离子体中的等离子体温度。柱状密度在此通过量化共振线的自吸收来计算。事实证明,这是准确测定血浆温度的一种有前途的方法。为了验证该技术的能力,在不同的栅极延迟时间测量等离子体发射。对于每个延迟,均通过常规的Saha-Boltzmann图(通过使用激发态)和利用新的柱状密度Saha-Boltzmann(CD-SB)图来计算激发温度。结果表明,在血浆进化的后期,CD-SB图比常规的Saha-Boltzmann图更适合于测定血浆温度。这些发现为等离子体的物理表征提供了一种新方法,并使人们能够获得有关等离子体状态的大量信息。

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