Comprehensive Study on the Electron Temperature and Electron Density of Laser-Induced Mg Plasma

Yao Hongbing, E. Asamoah, C. Jiawei, Y. Dongqing, Y. Fengxiao
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引用次数: 4

Abstract

In this study, we shall report the spectroscopic studies of the laser induced-Mg plasma in the atmospheric air by a Q-switched Nd-YAG laser operating at its fundamental wavelength of 1062 nm. The plasma was evaluated as a function of distance along the plasma expansion from 0.5-5.5 mm. The electron temperature and the electron number density were determined from the Boltzmann’s plot method and the Stark broadening methods respectively. From our investigations the electron temperature was evaluated to be in the range of 17556-9785 K for the laser energy of 500 mJ and 17341-8946 K with laser energy of 450 mJ. The electron number density was deduced to be from 1.46 × 1017-1.89 × 1017 cm-3 and 1.29 × 1017-1.78×1017 cm-3 respectively. From our evaluations, we observed that the electron temperature and number density decrease along the distance of the plasma expansion, and also increases with increasing laser energy.
激光诱导Mg等离子体电子温度和电子密度的综合研究
在本研究中,我们将报道一个工作在1062 nm基波长的调q Nd-YAG激光器对大气中激光诱导的mg等离子体的光谱研究。等离子体被评估为沿等离子体膨胀0.5-5.5 mm距离的函数。分别用玻尔兹曼图法和斯塔克展宽法测定了电子温度和电子数密度。结果表明,当激光能量为500 mJ时,电子温度在17556 ~ 9785 K之间;当激光能量为450 mJ时,电子温度在17341 ~ 8946 K之间。电子数密度分别为1.46 ×1017 ~ 1.89 ×1017 cm-3和1.29 × 1017-1.78×1017 cm-3。结果表明,电子温度和电子数密度随等离子体膨胀距离的增大而减小,随激光能量的增大而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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