PLASMA ELECTRON DENSITY MEASUREMENTS BY LASER- AND COLLISION-INDUCED FLUORESCENCE METHOD

K. Tsuchida, S. Miyake, K. Kadota, J. Fujita
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引用次数: 29

Abstract

A new method based on the laser-induced fluorescence method has been developed to measure the spatial electron density distribution in plasmas. The local electron density can be determined by observing the intensity ratio of the laser- to the collision-induced fluorescence. A spatial electron density distribution of a helium plasma (Te approximately 6 eV, ne:1011-12 cm-3) has been determined by observing the He(31P to 21S) laser-induced fluorescence and the He(31D to 21P) collision-induced fluorescence resulting from the He(31P to 31D) process due to collisions with electrons. The comparison of the result with that of a conventional method proves this new method is of practical use in the space-resolved measurements of plasma electron density.
用激光和碰撞诱导荧光法测量等离子体电子密度
提出了一种基于激光诱导荧光法测量等离子体中电子密度空间分布的新方法。局部电子密度可以通过观察激光与碰撞诱导荧光的强度比来确定。通过观察氦等离子体(Te约为6 eV, ne:1011-12 cm-3)激光诱导的He(31P - 21S)荧光和He(31P - 31D)与电子碰撞过程产生的He(31D - 21P)碰撞诱导荧光,确定了氦等离子体(Te约为6 eV, ne:1011-12 cm-3)的空间电子密度分布。与传统方法的结果比较表明,该方法在空间分辨等离子体电子密度测量中具有实用性。
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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