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雕刻超冷中性等离子体。

Sculpted ultracold neutral plasmas.

作者信息

Dharodi Vikram S, Murillo Michael S

机构信息

Department of Computational Mathematics, Science, and Engineering, Michigan State University, East Lansing, Michigan 48824, USA.

出版信息

Phys Rev E. 2020 Feb;101(2-1):023207. doi: 10.1103/PhysRevE.101.023207.

Abstract

Ultracold neutral plasma (UNP) experiments allow for careful control of plasma properties across Coulomb coupling regimes. Here, we examine how UNPs can be used to study heterogeneous, nonequilibrium phenomena, including nonlinear waves, transport, hydrodynamics, kinetics, stopping power, and instabilities. Through a series of molecular dynamics simulations, we have explored UNPs formed with spatially modulated ionizing radiation. We have developed a computational model for such sculpted UNPs that includes an ionic screened Coulomb interaction with a spatiotemporal screening length, and Langevin-based spatial ion-electron and ion-neutral collisions. We have also developed a hydrodynamics model and have extracted its field quantities (density, flow velocity, and temperature) from the molecular dynamics simulation data, allowing us to investigate kinetics by examining moment ratios and phase-space dynamics; we find that it is possible to create UNPs that vary from nearly perfect fluids (Euler limit) to highly kinetic plasmas. We have examined plasmas in three geometries: a solid rod, a hollow rod, and a gapped slab; we have studied basic properties of these plasmas, including the spatial Coulomb coupling parameter. By varying the initial conditions, we find that we can design experimental plasmas that would allow the exploration of a wide range of phenomena, including shock and blast waves, stopping power, two-stream instabilities, and much more. Using an evaporative cooling geometry, our results suggest that much larger Coulomb couplings can be achieved, possibly in excess of 10.

摘要

超冷中性等离子体(UNP)实验能够在整个库仑耦合区域对等离子体特性进行精确控制。在此,我们研究了如何利用超冷中性等离子体来研究非均匀、非平衡现象,包括非线性波、输运、流体动力学、动力学、阻止本领和不稳定性。通过一系列分子动力学模拟,我们探索了由空间调制电离辐射形成的超冷中性等离子体。我们为这种经过雕琢的超冷中性等离子体开发了一个计算模型,该模型包括具有时空屏蔽长度的离子屏蔽库仑相互作用,以及基于朗之万方程的空间离子 - 电子和离子 - 中性粒子碰撞。我们还开发了一个流体动力学模型,并从分子动力学模拟数据中提取了其场量(密度、流速和温度),这使我们能够通过检查矩比和相空间动力学来研究动力学;我们发现有可能创建从近乎完美流体(欧拉极限)到高动力学等离子体的超冷中性等离子体。我们研究了三种几何形状的等离子体:实心棒、空心棒和带隙平板;我们研究了这些等离子体的基本特性,包括空间库仑耦合参数。通过改变初始条件,我们发现可以设计实验性等离子体,用于探索广泛的现象,包括激波和爆炸波、阻止本领、双流不稳定性等等。使用蒸发冷却几何结构,我们的结果表明可以实现大得多的库仑耦合,可能超过10。

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