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Transition from homogeneous stationary to oscillating state in planar gas discharge-semiconductor system in nitrogen: Effect of fluid modelling approach

机译:从均匀静止到氮气平面气体放电半导体系统中的振荡状态的过渡:流体建模方法的影响

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摘要

A laterally extended dc-driven system of planar gas discharge with a high-ohmic semiconductor electrode is considered. Numerical models are based on the fluid equations of plasma with driftdiffusion approximation for particle fluxes. The effect of different modelling approaches (with simpler and more detailed treatment of the electron transport and plasma chemical reactions) is analyzed. Bifurcation diagrams separating stable stationary states of the system from oscillatory states are derived and compared with the experimental data.
机译:考虑了具有高欧姆半导体电极的平面气体放电的横向扩展的直流驱动系统。 数值模型基于粒子通量的漂移近似的等离子体的流体方程。 分析了不同建模方法的效果(具有更简单,更详细地处理电子传输和血浆化学反应)。 从振荡状态衍生出分离系统稳定固定状态的分叉静止状态,并与实验数据进行比较。

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