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首页> 外文期刊>Plasma physics and controlled fusion >The interaction of a flowing plasma with a dipole magnetic field: measurements and modelling of a diamagnetic cavity relevant to spacecraft protection
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The interaction of a flowing plasma with a dipole magnetic field: measurements and modelling of a diamagnetic cavity relevant to spacecraft protection

机译:流动等离子体与偶极子磁场的相互作用:与航天器保护有关的反磁性腔的测量和建模

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摘要

Here we describe a new experiment to test the shielding concept of a dipole-like magnetic field and plasma, surrounding a spacecraft forming a 'mini magnetosphere'. Initial laboratory experiments have been conducted to determine the effectiveness of a magnetized plasma barrier to be able to expel an impacting, low beta, supersonic flowing energetic plasma representing the solar wind. Optical and Langmuir probe data of the plasma density, the plasma flow velocity and the intensity of the dipole field clearly show the creation of a narrow transport barrier region and diamagnetic cavity virtually devoid of energetic plasma particles. This demonstrates the potential viability of being able to create a small 'hole' in a solar wind plasma, of the order of the ion Larmor orbit width, in which an inhabited spacecraft could reside in relative safety. The experimental results have been quantitatively compared with a 3D particle-in-cell 'hybrid' code simulation that uses kinetic ions and fluid electrons, showing good qualitative agreement and excellent quantitative agreement. Together the results demonstrate the pivotal role of particle kinetics in determining generic plasma transport barriers.
机译:在这里,我们描述了一个新实验,以测试围绕偶极子形成“迷你磁层”的类似偶极子磁场和等离子体的屏蔽概念。已经进行了初步的实验室实验以确定磁化等离子体屏障的有效性,该屏障能够排出代表太阳风的撞击性低β超音速流动高能等离子体。等离子体密度,等离子体流速和偶极子场强度的光学和Langmuir探针数据清楚地表明,实际上没有了高能的等离子体粒子,形成了一个狭窄的传输势垒区和抗磁性腔。这证明了能够在太阳风等离子体中创建一个小“洞”(大约为拉莫尔轨道离子宽度)的潜在可行性,其中一个居住的航天器可以相对安全地居住在其中。实验结果已与使用动离子和流体电子的3D单元内“混合”代码模拟进行了定量比较,显示出良好的定性一致性和出色的定量一致性。在一起的结果证明了粒子动力学在确定通用的等离子体传输障碍中的关键作用。

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