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低密度实验室等离子体中高主量子数氢巴尔末线的斯塔克展宽

Stark broadening of high principal quantum number hydrogen Balmer lines in low-density laboratory plasmas.

作者信息

Stambulchik E, Alexiou S, Griem H R, Kepple P C

机构信息

Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Jan;75(1 Pt 2):016401. doi: 10.1103/PhysRevE.75.016401. Epub 2007 Jan 3.

Abstract

We present results for Stark broadening of high principal quantum number (up to n=15 ) Balmer lines, using an analytical (the "standard theory") approach and two independently developed computer simulation methods. The line shapes are calculated for several sets of plasma parameters, applicable to radio-frequency discharge (N(e) approximately 10(13) cm(-3)) and magnetic fusion (N(e) approximately 10(15) cm(-3)) experiments. Comparisons of the calculated line profiles to the experimental data show a very good agreement. Density and temperature dependences of the linewidths, as well as relative contributions of different Stark-broadening mechanisms, are analyzed. It is seen that the standard theory of line broadening is sufficiently accurate for the entire set of plasma conditions and spectral transitions considered here, while an alternative theory ("advanced generalized theory") is shown to be inadequate for the higher-density region. A discussion of possible reasons for this disagreement is given.

摘要

我们展示了使用解析方法(“标准理论”)和两种独立开发的计算机模拟方法得到的高主量子数(高达n = 15)巴尔末线的斯塔克展宽结果。针对几组适用于射频放电(电子密度N(e)约为10¹³ cm⁻³)和磁约束聚变(电子密度N(e)约为10¹⁵ cm⁻³)实验的等离子体参数,计算了谱线形状。将计算得到的谱线轮廓与实验数据进行比较,结果显示吻合得非常好。分析了线宽的密度和温度依赖性,以及不同斯塔克展宽机制的相对贡献。可以看出,对于这里所考虑的整个等离子体条件和光谱跃迁集合,线展宽的标准理论足够准确,而另一种理论(“高级广义理论”)在高密度区域则显示出不足。文中对这种不一致的可能原因进行了讨论。

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