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Particle-in-cell and Monte Carlo collision simulations of the cathode sheath in an atmospheric direct-current arc discharge

机译:大气直流电弧放电中阴极鞘的质点和蒙特卡洛碰撞模拟

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摘要

A sheath is the transition region from plasma to a solid surface, which also plays a critical role in determining the behaviors of many lab and industrial plasmas. However, the cathode sheath properties in arc discharges are not well understood yet due to its multi-scale and kinetic features. In this letter, we have adopted an implicit particle-in-cell Monte Carlo collision (PIC-MCC) method to study the cathode sheath in an atmospheric arc discharge plasma. The cathode sheath thickness, number densities and averaged energies of electrons and ions, the electric field distribution, as well as the spatially averaged electron energy probability function (EEPF), are predicted self-consistently by using this newly developed kinetic model. It is also shown that the thermionic emission at the hot cathode surface is the dominant electron emission process to sustain the arc discharges, while the effects from secondary and field electron emissions are negligible. The present results verify the previous conjectures and experimental observations.
机译:鞘是从血浆到固体表面的过渡区域,在确定许多实验室和工业血浆的行为中也起着至关重要的作用。然而,由于其多尺度和动力学特征,电弧放电中的阴极鞘性能尚未得到很好的理解。在这封信中,我们采用了隐式单元内蒙特卡洛碰撞(PIC-MCC)方法来研究大气电弧放电等离子体中的阴极鞘。使用此新开发的动力学模型可以自洽地预测阴极鞘的厚度,电子和离子的数量密度和平均能量,电场分布以及空间平均电子能量概率函数(EEPF)。还显示出在热阴极表面的热电子发射是维持电弧放电的主要电子发射过程,而来自二次和场电子发射的影响可以忽略。目前的结果证实了以前的猜想和实验观察。

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