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Emissive Langmuir Probes in the Strong Emission Regime for the Determination of the Plasma Properties

机译:强辐射体制下的发射朗缪尔探针用于测定等离子体性能

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摘要

The determination of the plasma potential Vpl of unmagnetized plasmas by using the floating potential of emissive Langmuir probes operated in the strong emission regime is investigated. The experiments evidence that, for most cases, the electron thermionic emission is orders of magnitude larger than the plasma thermal electron current. The temperature-dependent floating potentials of negatively biased Vpmenor queVpl emissive probes are in agreement with the predictions of a simple phenomenological model that considers, in addition to the plasma electrons, an ad-ditional electron group that contributes to the probe current. The latter would be constituted by a fraction of the repelled electron thermionic current, which might return back to the probe with a different energy spectrum. Its origin would be a plasma potential well formed in the plasma sheath around the probe, acting as a virtual cathode or by collisions and electron thermalization pro-cesses. These results suggest that, for probe bias voltages close to the plasma potential Vp?Vpl, two electron populations coexist, i.e., the electrons from the plasma with temperatureTeand a large group of returned thermionic electrons. These results question the theoretical possibility of measuring the electron temperature by using emissive probes biased to potentials Vp about lower equal than ?Vpl.
机译:研究了使用在强发射条件下工作的朗格缪尔探针的浮动电势确定未磁化等离子体的电势Vpl的方法。实验证明,在大多数情况下,电子热电子发射比等离子体热电子电流大几个数量级。负偏压的Vpmenor queVpl发射探针的温度相关浮动电位与简单现象学模型的预测相符,该模型除了考虑等离子体电子外,还考虑了一个额外的电子基团,该电子基团有助于探针电流。后者将由一部分排斥的电子热电子电流构成,该电流可能以不同的能谱返回到探头。它的起源将是在探针周围的等离子鞘层中良好形成的等离子电位,它充当虚拟阴极或通过碰撞和电子热过程。这些结果表明,对于接近于等离子体电势Vp≥Vpl的探针偏置电压,两个电子种群共存,即,来自等离子体的电子具有温度Te和大量返回的热电子。这些结果质疑了通过使用被偏压到大约等于ΔVpl的电位Vp的发射探针来测量电子温度的理论可能性。

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