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Self-consistent Monte Carlo simulation of particle motion and photon transport in the Argon positive column

机译:氩正列中粒子运动和光子传输的自洽蒙特卡洛模拟

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摘要

A highly accurate self-consistent Monte Carlo method including charged and neutral particle motion and resonance photon transport is developed and applied to the simulation of the positive column of Argon discharge. The distribution of power loss across the tube is investigated. It is shown that negative slope of the current-voltage gradient curve can not be explained by only one factor. Diffusion of metastable atoms to the tube wall in the case of low current (0.2-3 mA) is responsible for the most part of negative slope. For the high currents the variation of radiation power loss makes a main contribution to the amplitude of the negative slope.
机译:开发了一种高精度的自洽蒙特卡洛方法,包括带电和中性粒子运动以及共振光子传输,并将其应用于氩放电正柱的模拟。研究了整个管的功率损耗分布。结果表明,电流-电压梯度曲线的负斜率不能仅用一个因素来解释。在低电流(0.2-3 mA)的情况下,亚稳态原子向管壁的扩散是负斜率的主要部分。对于大电流,辐射功率损耗的变化对负斜率的幅度起主要作用。

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