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磁化实验室等离子体射流:实验与模拟

Magnetized laboratory plasma jets: experiment and simulation.

作者信息

Schrafel Peter, Bell Kate, Greenly John, Seyler Charles, Kusse Bruce

机构信息

Laboratory of Plasma Studies, Cornell University, Ithaca, New York 14853, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Jan;91(1):013110. doi: 10.1103/PhysRevE.91.013110. Epub 2015 Jan 30.

Abstract

Experiments involving radial foils on a 1 MA, 100 ns current driver can be used to study the ablation of thin foils and liners, produce extreme conditions relevant to laboratory astrophysics, and aid in computational code validation. This research focuses on the initial ablation phase of a 20 μm Al foil (8111 alloy), in a radial configuration, driven by Cornell University's COBRA pulsed power generator. In these experiments ablated surface plasma (ASP) on the top side of the foil and a strongly collimated axial plasma jet are observed developing midway through the current rise. With experimental and computational results this work gives a detailed description of the role of the ASP in the formation of the plasma jet with and without an applied axial magnetic field. This ∼1 T field is applied by a Helmholtz-coil pair driven by a slow, 150 μs current pulse and penetrates the load hardware before arrival of the COBRA pulse. Several effects of the applied magnetic field are observed: (1) without the field extreme-ultraviolet emission from the ASP shows considerable azimuthal asymmetry while with the field the ASP develops azimuthal motion that reduces this asymmetry, (2) this azimuthal motion slows the development of the jet when the field is applied, and (3) with the magnetic field the jet becomes less collimated and has a density minimum (hollowing) on the axis. PERSEUS, an XMHD code, has qualitatively and quantitatively reproduced all these experimental observations. The differences between this XMHD and an MHD code without a Hall current and inertial effects are discussed. In addition the PERSEUS results describe effects we were not able to resolve experimentally and suggest a line of future experiments with better diagnostics.

摘要

在1兆安、100纳秒电流驱动器上进行的涉及径向箔片的实验,可用于研究薄箔片和衬套的烧蚀,产生与实验室天体物理学相关的极端条件,并有助于计算代码验证。本研究聚焦于由康奈尔大学的COBRA脉冲功率发生器驱动的、呈径向配置的20微米铝箔(8111合金)的初始烧蚀阶段。在这些实验中,观察到箔片顶部的烧蚀表面等离子体(ASP)以及在电流上升中途形成的强准直轴向等离子体射流。结合实验和计算结果,这项工作详细描述了在有和没有施加轴向磁场的情况下,ASP在等离子体射流形成过程中的作用。这个约1特斯拉的磁场由一对亥姆霍兹线圈施加,该线圈由一个缓慢的150微秒电流脉冲驱动,并在COBRA脉冲到达之前穿透负载硬件。观察到了施加磁场的几个效应:(1)没有磁场时,ASP的极紫外发射显示出相当大的方位不对称性,而有磁场时,ASP产生方位运动,减少了这种不对称性;(2)施加磁场时,这种方位运动会减缓射流的发展;(3)有磁场时,射流的准直性降低,轴线上有密度最小值(空洞)。XMHD代码PERSEUS已经定性和定量地再现了所有这些实验观测结果。讨论了这个XMHD代码与一个没有霍尔电流和惯性效应的MHD代码之间的差异。此外,PERSEUS的结果描述了我们无法通过实验解决的效应,并提出了一系列具有更好诊断方法的未来实验方向。

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