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On attenuation of electron current of flush-mounted probes and electrodes in magnetised plasmas

机译:关于磁化等离子体中齐平安装的探头和电极的电子电流的衰减

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The ratio of electron and ion saturation currents measured by probes embedded in the plasma-facing components (PFCs) in magnetised plasmas is typically lower than predicted by Langmuir theory. In the past, several works targeted various effects influencing the ion saturation current, which can be larger than expected, especially if the magnetic field is at a grazing angle with respect to the probe surface. In this contribution, we focus on the electron current, which can be reduced when the magnetic field line intercepting the probe passes through the magnetic pre-sheath of the nearby PFC. In such a case an effective potential well forms and repels a fraction of the electrons incoming from the plasma. Experimental results obtained by a tiltable limiter at the DITE tokamak are revisited and reproduced by means of 2D3V particle-in-cell simulations. The reduction of the electron current is indeed observed both in simulations and in experiment. This mechanism may also explain why some divertor biasing experiments did not produce E x B flows in the divertor region.
机译:由嵌入在磁化等离子体中的面向等离子体的组件(PFC)中的探针测量的电子和离子饱和电流之比通常低于Langmuir理论的预测值。过去,有几项工作针对影响离子饱和电流的各种影响,这些影响可能比预期的要大,尤其是在磁场相对于探头表面处于掠角的情况下。在这一贡献中,我们集中于电子电流,当与探头相交的磁场线穿过附近PFC的磁性预护套时,可以减小电子电流。在这种情况下,有效电势很好地形成并排斥了从等离子体进入的一部分电子。通过2D3V单元内粒子模拟,回顾和再现了DITE Tokamak上由可倾斜限制器获得的实验结果。实际上,在模拟和实验中都观察到电子电流的减小。这种机制也可以解释为什么一些偏滤器偏斜实验没有在偏滤器区域产生E x B流。

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