论文标题

在存在中性气体背景的情况下,自一致的形成和稳态表征被困的高能电子云

Self-consistent formation and steady-state characterisation of trapped high energy electron clouds in the presence of a neutral gas background

论文作者

Bars, G. Le, Hogge, J. -Ph., Loizu, J., Alberti, S., Romano, F., Cerfon, A.

论文摘要

这项研究认为,通过弹性和非弹性(电离)碰撞,在类似于Gyrotron Electron Guns的同轴几何形状中,通过弹性和非弹性(电离)碰撞与背景中性气体相互作用的电子云形成和动力学。由于交叉磁场线和电力电源线的结果,这些云仍然被困在轴向上,从而产生了类似于笔陷阱的潜在井。与标准的笔陷阱相反,在这项研究中,我们考虑了强大的外部施用的径向电场,该电场的阶数与空间充电场的阶数相同。特别是,同轴几何形状,强径向电场和电子碰撞与腔室中存在的残留中性气(RNG)的组合诱导了不可忽略的径向颗粒的传输和电离。在本文中,使用2D3V粒子中的代码研究了电子中性碰撞引起的云密度和电流的动力学。特此提出仿真结果和参数扫描。最后,根据外部施加的电场和磁场以及RNG压力,得出了流体模型来解释和预测云峰密度和峰值径向电流。

This study considers the self-consistent formation and dynamics of electron clouds interacting with a background neutral gas through elastic and inelastic (ionisation) collisions in coaxial geometries similar to gyrotron electron guns. These clouds remain axially trapped as the result of crossed magnetic field lines and electric equipotential lines creating potential wells similar to those used in Penning traps. Contrary to standard Penning traps, in this study we consider a strong externally applied radial electric field which is of the same order as that of the space-charge field. In particular, the combination of coaxial geometry, strong radial electric fields and electron collisions with the residual neutral gas (RNG) present in the chamber induce non-negligible radial particle transport and ionisation. In this paper, the dynamics of the cloud density and currents resulting from electron-neutral collisions are studied using a 2D3V particle-in-cell code. Simulation results and parametric scans are hereby presented. Finally, a fluid model is derived to explain and predict the cloud peak density and peak radial current depending on the externally applied electric and magnetic fields, and on the RNG pressure.

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