低温等离子体负离子源磁滤区共振诱导不稳定性的可行性

Miral Shah, B. Chaudhury, M. Bandyopadhyay, A. Chakraborty
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引用次数: 3

摘要

低压低温等离子体(LTP)具有空间变化的横向磁滤场结构,具有广泛的应用。在这种装置中,磁场值足够低,它只磁化电子而不磁化离子,并通过限制热电子的通量作为电子过滤器。由于横向磁滤波场的梯度,电子回旋加速器的频率也随位置的变化而变化,在某些地方接近不同的碰撞频率。开发了一种基于并行2D-3V细胞内粒子蒙特卡罗碰撞(PIC MCC)动力学模型的代码,用于研究负离子源中的等离子体输运,其中考虑了空间变化的横向磁滤波场,源的几何形状类似于ROBIN(印度RF操作束源)。研究了具有不同时间尺度和长度尺度的各种与碰撞相关的物理现象。在本文中,我们报告了在过滤场区域附近观察到的不稳定性。还观察到,这些不稳定性的频率接近于某些电子和离子碰撞频率,这可能在磁滤区产生共振现象,并影响跨场输运和加热。
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The feasibility of resonance induced instabilities in the magnetic filter region of low temperature plasma based negative ion sources
Low pressure, low-temperature plasma (LTP) with a spatially varying transverse magnetic filter field configuration has a wide range of applications. In such devices, the magnetic field value is low enough that it magnetizes only the electrons and not the ions, and works as an electron filter by limiting the flux of hot electrons. Due to the gradient of the transverse magnetic filter field, the electron cyclotron frequencies are also changing with location and in some places it comes close to different collision frequencies. A parallel 2D-3V Particle-in-Cell Monte Carlo Collision (PIC MCC) kinetic model based code has been developed to study plasma transport in a negative ion source where a spatially varying transverse magnetic filter field is considered in a source geometry similar to that of ROBIN (RF Operated Beam source in INdia). Various collision dependent physical phenomena, having different time scales and length scales are studied. In this article, we are reporting instabilities, observed near the filter field region. It is also observed that the frequencies of those instabilities are close to some of the electronic and ionic collision frequencies which may create resonant phenomena in the magnetic filter region and influence the cross-field transport, and heating.
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