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Studies of plasma potential with emissive probes in the low temperature plasma experiment NJORD

机译:低温等离子体实验中发射探针对等离子体电位的研究NJORD

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摘要

In this thesis, the concept of an emissive probe has been used to obtain the plasma potential in the low temperature plasma experiment NJORD. An emissive probe is a probe concept in which a wire is heated strong enough to emit a Richardson current. The probe is then swept through several voltage biases and thus, an I-V trace obtained. With the current from the emission and the collected current, this gives in principle very easy access to the plasma potential. NJORD is a plasma discharge driven by a radio frequency in what is called helicon range. This specifies a small frequency band of oscillations that connect well to the electrons. While having good heating properties, it induces a set of problems for the emissive probe due to the oscillations. Applying modelling and monitoring how the recorded traces deviate from the expected ideal traces, however, gives some insight into the physical processes taking place and made it possible to prove the existence of a second electron population. Observing two electron populations with this concept is a novelty and could help completing the theory behind the so called "helicon double layer thruster" concept.
机译:本文在低温等离子体实验NJORD中采用了发射探针的概念来获得等离子体电势。发射探针是一种探针概念,其中将电线加热到足以发出理查森电流的程度。然后将探头扫过几个电压偏置,从而获得I-V迹线。利用来自发射的电流和收集的电流,原则上这使得非常容易接近等离子体电势。 NJORD是由所谓的螺旋范围内的射频驱动的等离子体放电。这指定了一个振荡的小频带,可以很好地与电子连接。在具有良好的加热性能的同时,由于振荡,它给发射探头带来了一系列问题。但是,通过应用建模和监视记录的迹线如何偏离预期的理想迹线,可以深入了解正在发生的物理过程,并有可能证明存在第二个电子种群。用这个概念观察两个电子种群是一个新颖的现象,可以帮助完成所谓的“螺旋双层推进器”概念背后的理论。

著录项

  • 作者

    Schregel Christian-Georg;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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