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首页> 外文期刊>Physics of plasmas >Generalized plasma dispersion function: One-solve-all treatment, visualizations, and application to Landau damping
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Generalized plasma dispersion function: One-solve-all treatment, visualizations, and application to Landau damping

机译:通用的等离子体扩散功能:一站式全处理,可视化以及在Landau阻尼中的应用

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摘要

A unified, fast, and effective approach is developed for numerical calculation of the well-known plasma dispersion function with extensions from Maxwellian distribution to almost arbitrary distribution functions, such as the δ, flat top, triangular, κ or Lorentzian, slowing down, and incomplete Maxwellian distributions. The singularity and analytic continuation problems are also solved generally. Given that the usual conclusion γ ∝ ? f 0 / ? v is only a rough approximation when discussing the distribution function effects on Landau damping, this approach provides a useful tool for rigorous calculations of the linear wave and instability properties of plasma for general distribution functions. The results are also verified via a linear initial value simulation approach. Intuitive visualizations of the generalized plasma dispersion function are also provided.
机译:开发了一种统一,快速而有效的方法,用于对著名的等离子体弥散函数进行数值计算,其扩展范围从麦克斯韦分布到几乎任意分布的函数,例如δ,平顶,三角形,κ或Lorentzian,减速和麦克斯韦分布不完整。奇异性和解析连续性问题通常也会得到解决。鉴于通常的结论是? f 0 /? v只是讨论分布函数对Landau阻尼的影响时的粗略近似,此方法提供了一个有用的工具,可用于严格计算一般分布函数的等离子体的线性波和不稳定性。还通过线性初始值模拟方法验证了结果。还提供了广义等离子体弥散函数的直观可视化。

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