Kinetic simulation of vacuum plasma expansion beyond the "plasma approximation"

V. Kozhevnikov, A. Kozyrev, A. Kokovin, N. Semeniuk
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Abstract

Introduction/purpose: One of the key approaches to solving an entire class of modern plasma physics problems is the so-called "plasma approximation". The most general definition of the "plasma approximation" is a theoretical approach to the electric field calculation of a system of charges under the electric quasi-neutrality condition. The purpose of this paper is to compare the results of the numerical simulation of the kinetic processes of the quasi-neutral plasma bunch expansion to the analytical solution of a similar kinetic model but in the "plasma approximation". Methods: The given results are obtained by the methods of deterministic modeling based on the numerical solution of the system of Vlasov-Poisson equations. Results: The provided comparison of the analytical expressions for the solution of kinetic equations in the "plasma approximation" and the numerical solutions of the Vlasov-Poisson equations system convincingly show the limitations of the "plasma approximation" in some important cases of the considered problem of plasma formation decay. Conclusion: The theoretical results of this work are of great importance for understanding the shortcomings of the "plasma approximation", which can manifest themselves in practical applications of computational plasma physics.
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超越“等离子体近似”的真空等离子体膨胀动力学模拟
简介/目的:解决整个现代等离子体物理问题的关键方法之一是所谓的“等离子体近似”。“等离子体近似”的最一般定义是在电准中性条件下计算电荷系统电场的理论方法。本文的目的是将准中性等离子束展开动力学过程的数值模拟结果与“等离子体近似”下类似动力学模型的解析解进行比较。方法:采用基于Vlasov-Poisson方程组数值解的确定性建模方法,得到给定结果。结果:“等离子体近似”动力学方程解的解析表达式与Vlasov-Poisson方程组的数值解的比较,令人信服地显示了“等离子体近似”在考虑等离子体形成衰变问题的一些重要情况下的局限性。结论:本工作的理论结果对于理解“等离子体近似”的缺陷具有重要意义,这些缺陷可以在计算等离子体物理的实际应用中体现出来。
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发文量
24
审稿时长
12 weeks
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