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首页> 外文期刊>Plasma physics reports >Spectroscopic measurements of the electron and ion temperatures and effective ion charge in current sheets formed in two- and three-dimensional magnetic configurations
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Spectroscopic measurements of the electron and ion temperatures and effective ion charge in current sheets formed in two- and three-dimensional magnetic configurations

机译:二维和三维磁性结构中形成的电流片中电子和离子温度以及有效离子电荷的光谱测量

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摘要

The spatial distributions of the electron temperature and density, the effective and average ion charges, and the thermal and directed ion velocities in current sheets formed in two-dimensional magnetic fields and three-dimensional magnetic configurations with an X line were studied using spectroscopic and interference holographic methods. The main attention was paid to studying the time evolution of the intensities of spectral lines of the working-gas (argon) and impurity ions under different conditions. Using these data, the electron temperature was calculated with the help of an original mathematical code based on a collisional-radiative plasma model incorporating the processes of ionization and excitation, as well as MHD plasma flows generated in the stage of the current-sheet formation. It is shown that the electron temperature depends on the longitudinal magnetic field, whereas the ion temperature is independent of it. The effective ion charge of the current-sheet plasma was determined for the first time.
机译:利用光谱和干涉技术研究了在X线的二维磁场和三维磁性构型中形成的电流片中电子温度和密度,有效离子电荷和平均离子电荷以及热和定向离子速度的空间分布全息方法。主要研究了在不同条件下工作气体(氩气)和杂质离子的谱线强度随时间的变化。利用这些数据,借助基于碰撞辐射等离子体模型的原始数学代码,结合了电离和激发过程以及在电流板形成阶段产生的MHD等离子体流,可以计算出电子温度。结果表明,电子温度取决于纵向磁场,而离子温度与其无关。首次确定电流表等离子体的有效离子电荷。

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