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Laser-Spectroscopic Methods for Diagnostics of Electric Fields in Plasma

机译:激光光谱法诊断等离子体中的电场

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摘要

Methods for measuring electric fields in plasma based on laser spectroscopy and the Stark effect on Rydberg atomic levels and rotational levels of polar diatomic molecules are considered. These methods feature high sensitivity and allow measurements of both static and alternating electric fields in plasma with high temporal and spatial resolutions. It is shown that laser-spectroscopic techniques also allow measurements of relatively weak magnetic fields in plasmas of facilities with magnetic plasma confinement. Such measurements can be based on the use of Stark splitting of highly excited energy levels of hydrogen atoms in a Lorentzian electric field, while a decrease in the fluorescent-radiation intensity at the Balmer-α line can serve as a recorded signal.
机译:考虑了基于激光光谱的等离子体电场测量方法以及对Rydberg原子能级和极性双原子分子旋转能级的Stark效应。这些方法具有很高的灵敏度,并且可以以高的时间和空间分辨率测量等离子体中的静态和交变电场。结果表明,激光光谱技术还允许测量具有磁等离子体限制的设施的等离子体中相对较弱的磁场。这样的测量可以基于在洛伦兹电场中氢原子的高激发能级的Stark分裂的使用,而Balmer-α线的荧光辐射强度的降低可以用作记录的信号。

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