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Modeling Laser-Induced Plasma Expansion Under Equilibrium Conditions

机译:在平衡条件下模拟激光诱导的等离子体膨胀

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摘要

A theoretical investigation of the expansion of the plasma, produced by a nanosecond laser pulse hitting a titanium metallic target, has been carried out. The study is oriented to understand the interaction of the plasma plume with the surrounding gas (air) not only from the fluid dynamic point of view, but also considering the effects of chemical reactions. To this purpose, a 2-D solver of the Euler equations has been developed and self-consistently coupled with the local thermodynamic equilibrium calculation. The results show the plasma confinement due to the ambient gas and the appearance of metallic oxides in proximity of the plume border.
机译:对纳秒激光脉冲撞击钛金属靶材产生的等离子体膨胀进行了理论研究。该研究旨在不仅从流体动力学的角度了解等离子体羽与周围气体(空气)的相互作用,而且还考虑化学反应的影响。为此,已经开发了欧拉方程的二维解算器,并与局部热力学平衡计算自洽耦合。结果表明,由于周围气体和等离子体边界附近的金属氧化物的出现,等离子体受到限制。

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