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Development of Supersonic Metastable Helium Pulsed Beam Source for Plasma Diagnostics

机译:用于等离子体诊断的超亚稳氦脉冲束源的研制

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A supersonic metastable helium (2 ~1S) pulsed beam source, which consists of an electromagnetic valve, a collimation skimmer, and discharge electrodes for production of a plasma, has been constructed, which is essential for the direct measurement of electric fields in plasmas by means of polarization laser-induced fluorescence spectroscopy. A supersonic helium atomic beam with a short pulselength (~ 300 μs), narrow divergence (~1.1°), and high density of ~1.4 x 10~(14)cm~(-3) has been achieved. In order to generate metastable atoms in this beam source, a Penning-type discharge was employed, which is suitable for producing stable plasma with high temperature, even at low gas densities, due to the particular configuration of electrodes together with a magnetic field. Spectroscopic observations indicated that the temporal behaviors of neutral atom and ion emissions were almost the same as that of the helium atom profile, and on increasing the discharge voltage applied between electrodes, the spectral intensity increased approximately linearly. Moreover, the fact that the ion emission can also be observed showed that it was probable that a high-temperature plasma was generated by the Penning discharge.
机译:构造了一个超音速亚稳态氦(2〜1S)脉冲束源,该脉冲束源由一个电磁阀,一个准直分离器和一个用于产生等离子体的放电电极组成,这对于通过等离子体直接测量等离子体中的电场至关重要偏振激光诱导荧光光谱的手段。已经实现了具有短脉冲长度(〜300μs),窄发散度(〜1.1°)和高密度〜1.4 x 10〜(14)cm〜(-3)的超音速氦原子束。为了在该束源中产生亚稳态原子,采用了潘宁型放电,由于电极的特殊结构以及磁场,该放电适合于即使在低气体密度下也能产生高温稳定的等离子体。光谱观察表明,中性原子和离子发射的时间行为与氦原子分布的时间行为几乎相同,并且随着电极之间施加的放电电压的增加,光谱强度近似呈线性增加。此外,还可以观察到离子发射的事实表明,很可能由于潘宁放电而产生了高温等离子体。

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