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The influence of the solid to plasma phase transition on the generation of plasma instabilities

机译:固体到等离子体相变对等离子体不稳定性产生的影响

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摘要

The study of plasma instabilities is a research topic with fundamental importance since for the majority of plasma applications they are unwanted and there is always the need for their suppression. The initiating physical processes that seed the generation of plasma instabilities are not well understood in all plasma geometries and initial states of matter. For most plasma instability studies, using linear or even nonlinear magnetohydrodynamics (MHD) theory, the most crucial step is to correctly choose the initial perturbations imposed either by a predefined perturbation, usually sinusoidal, or by randomly seed perturbations as initial conditions. Here, we demonstrate that the efficient study of the seeding mechanisms of plasma instabilities requires the incorporation of the intrinsic real physical characteristics of the solid target in an electro-thermo-mechanical multiphysics study. The present proof-of-principle study offers a perspective to the understanding of the seeding physical mechanisms in the generation of plasma instabilities.
机译:等离子体不稳定性的研究是具有根本重要性的研究主题,因为对于大多数等离子体应用而言,它们是不希望的,并且始终需要对其进行抑制。在所有等离子体几何形状和物质的初始状态中,尚未很好地理解引发等离子体不稳定性产生的初始物理过程。对于大多数等离子体不稳定性研究,使用线性或什至非线性磁流体动力学(MHD)理论,最关键的步骤是正确选择由预定义的扰动(通常为正弦波)或由随机的种子扰动施加的初始扰动作为初始条件。在这里,我们证明有效地研究等离子体不稳定性的播种机理需要在电热机械多物理场研究中纳入固体靶标的固有真实物理特征。本原理验证研究为了解等离子体不稳定产生中的种子物理机理提供了一个视角。

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