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Non-Maxwellian to Maxwellian transitions of atmospheric microplasmas at microwave frequencies

机译:微波频率下大气微等离子体的非麦克斯韦到麦克斯韦转变

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Particle-in-cell/Monte Carlo simulations and numerical analysis of a single particle motion are performed for atmospheric He microplasmas at microwave frequencies to determine the characteristics of non-Maxwellian to Maxwellian transition. The left and the right regimes of Paschen curve, divided by this transition, reveal that the transition frequencies depend on the gap of electrodes and the neutral gas pressure to follow scaling laws for a new extended Paschen law. The fluid models are reasonable at the right-side regime of Paschen breakdown areas, but not on the left side, which is highly kinetic for electrons. The plasmas driven by weaker electric fields of high enough frequencies at the right-side Paschen regime breed more energetic electrons. Published by AIP Publishing.
机译:在微波频率下对大气He等离子体进行了单细胞运动的粒子内/蒙特卡罗模拟和数值分析,以确定非麦克斯韦到麦克斯韦转变的特征。 Paschen曲线的左右方向除以该跃迁,可以发现跃迁频率取决于电极间隙和中性气压,以遵循新的扩展Paschen律的定标律。流体模型在Paschen击穿区的右侧区域是合理的,但在左侧则不合理,这对于电子来说是高度动力学的。在右侧帕申政权下,由频率足够高的较弱电场驱动的等离子体会繁殖出更多的高能电子。由AIP Publishing发布。

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