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击穿后激光诱导等离子体向周围气体膨胀的辐射模型。

Radiative model of post-breakdown laser-induced plasma expanding into ambient gas.

作者信息

Kazakov A Ya, Gornushkin I B, Omenetto N, Smith B W, Winefordner J D

机构信息

Department of Mathematics, State University of Aerospace Instrumentation, St. Petersburg, Russia.

出版信息

Appl Opt. 2006 Apr 20;45(12):2810-20. doi: 10.1364/ao.45.002810.

Abstract

The dynamics of the radiative plasma expansion into an ambient gas is considered. The model describes the evolution of the plasma emission spectrum and the dynamics of the resulting shock wave. The time frame for the applicability of the model is in the tens of nanoseconds after the laser pulse is terminated, until a few microseconds later when the plasma ceases to emit. It is assumed that local thermodynamic equilibrium is established and that the plume expands with spherical symmetry. The model outputs are spatial and temporal distributions of atoms, ions, and electron number densities, evolution of atom and ion line profiles, and the shock wave. The model should be applicable to spectroscopic analysis of the initial plasma state and plasma dynamics.

摘要

考虑了辐射等离子体向周围气体膨胀的动力学过程。该模型描述了等离子体发射光谱的演化以及由此产生的冲击波的动力学过程。该模型适用的时间范围是在激光脉冲终止后的几十纳秒内,直到几微秒后等离子体停止发射。假设建立了局部热力学平衡,并且羽状物以球对称方式膨胀。模型输出包括原子、离子和电子数密度的空间和时间分布、原子和离子谱线轮廓的演化以及冲击波。该模型应适用于初始等离子体状态和等离子体动力学的光谱分析。

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