Theoretical Computation of Electron Density in Laser-Induced Carbon Plasma using Anisimov Model

Mohammed Alhamadani
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Abstract

In this work, electron number density calculated using Matlab program code with the writing algorithm of the program. Electron density was calculated using Anisimov model in a vacuum environment. The effect of spatial coordinates on the electron density was investigated in this study. It was found that the Z axis distance direction affects the electron number density (ne). There are many processes such as excitation; ionization and recombination within the plasma that possible affect the density of electrons. The results show that as Z axis distance increases electron number density decreases because of the recombination of electrons and ions at large distances from the target and the loss of thermal energy of the electrons in high distance with the progress of time and at a certain coordinate. The target is carbon (Graphite). The results were selected in four dimensions where three of them belong to spatial coordinates x, y, z and the fourth dimension is the electron density (ne).
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用Anisimov模型理论计算激光诱导碳等离子体中电子密度
在本工作中,利用Matlab程序代码计算电子数密度,并编写程序的算法。利用Anisimov模型计算了真空环境下的电子密度。本文研究了空间坐标对电子密度的影响。发现Z轴距离方向影响电子数密度(ne)。有许多过程,如激发;等离子体内部可能影响电子密度的电离和重组。结果表明,随着Z轴距离的增加,电子数密度随着时间的推移和某一坐标上电子与离子在离靶较远的地方发生复合以及电子在离靶较远的地方的热能损失而减小。目标是碳(石墨)。结果在四个维度上选择,其中三个维度属于空间坐标x, y, z,第四个维度是电子密度(ne)。
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