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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Optical emission spectroscopy and modeling of plasma produced by laser ablation of titanium oxides
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Optical emission spectroscopy and modeling of plasma produced by laser ablation of titanium oxides

机译:激光烧蚀钛氧化物产生的等离子体的发射光谱和建模

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摘要

In the present study, the time evolution of electron number density, of electron, atom and ion temperatures, of plasma produced by KrF excimer laser ablation of titanium dioxide and monoxide targets, are investigated by temporally and spatially resolved optical emission spectroscopy over a wide range of laser fluence from 1.7 to 6 J cm~(-2), oxygen pressures of 10~(-2)-10~(-1) torr and in a vacuum. A state-to-state collisional radiative model is proposed for the first time to interpret the experimental results at a distance of 0.6 mm from the target surface, in vacuum and for a time delay from 100 to 300 ns from the beginning of the laser pulse. In particular, we concentrate our attention on problems concerning the existence of the local thermodynamic conditions in the laser-induced plasma and deviation from them, as observed in our experiment. The numerical model proposed for calculating the electron number density and the population densities of atoms and ions in excited states give good quantitative agreement with the experimental results of the optical emission spectroscopy measurements.
机译:在本研究中,通过时间和空间分辨光发射光谱法研究了由KrF准分子激光烧蚀二氧化钛和一氧化碳靶产生的等离子体的电子数密度,电子,原子和离子温度随时间的演变。在真空中,激光通量从1.7到6 J cm〜(-2),氧气压力为10〜(-2)-10〜(-1)托。首次提出了状态间碰撞辐射模型,以解释在真空中距目标表面0.6 mm的距离以及从激光脉冲开始到100到300 ns的时间延迟下的实验结果。尤其是,我们将注意力集中在与激光诱导的等离子体中局部热力学条件的存在以及与它们的偏离有关的问题上,正如我们在实验中观察到的那样。所提出的用于计算激发态下的电子数密度以及原子和离子的种群密度的数值模型与光学发射光谱测量的实验结果具有良好的定量一致性。

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