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Source formulation for electron-impact ionization for fluid plasma simulations

机译:用于流体等离子体模拟的电子碰撞电离源配方

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摘要

The derivation of the correct functional form of source terms in plasma fluid theory is revisited. The relation between the fluid source terms and atomic physics differential cross sections is established for particle-impact ionization. It is shown that the interface between atomic and plasma physics is completely described by three scalar functions of the incident particle energy. These are the total cross section and the newly introduced forward momentum and energy functions, which are properties of the differential cross sections only. For electron-impact ionization, the binary-encounter-Bethe (BEB) and binary-encounter-dipole (BED) models (Kim and Rudd 1994 Phys. Rev. A 50 3954) are used to calculate these functions analytically, yielding expressions that both accurately capture the physics and can be efficiently evaluated within fluid simulation codes. The source terms explain the observed electron temperature regimes in a wide variety of basic plasma physics experiments, including the trends across different gases.
机译:重新讨论了在等离子流体理论中源项的正确功能形式的推导。建立了流体源项与原子物理微分截面之间的关系,以进行粒子碰撞电离。结果表明,原子和等离子体物理之间的界面完全由入射粒子能量的三个标量函数描述。这些是总横截面以及新引入的正向动量和能量函数,它们仅是微分横截面的属性。对于电子碰撞电离,使用二元相遇Bethe(BEB)模型和二元相遇偶极(BED)模型(Kim和Rudd 1994 Phys。Rev. A 50 3954)来解析计算这些函数,得到的表达式可以准确地捕获物理信息,并且可以在流体模拟代码中进行有效评估。源术语解释了各种基本等离子体物理实验中观察到的电子温度状态,包括不同气体之间的趋势。

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