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Magnetosheath plasma expansion: Hybrid simulations

机译:电磁炉等离子体膨胀:混合模拟

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摘要

We investigate the effect of slow expansion on a magnetosheath plasma and low-frequency waves using a two- dimensional hybrid expanding box simulation. We start our simulation with a homogeneous high beta plasma, which is marginally stable to the mirror and proton cyclotron instabilities. The expansion is imposed as an external force: the physical size of the simulation box increases in two dimensions: one parallel and one perpendicular with respect to the ambient magnetic field. This expansion leads to a continuous decrease of proton beta and drives an increase of the proton temperature anisotropy. In the early stages of the simulation, both mirror and proton cyclotron waves appear. The system establishes a marginally stable state with respect to both mirror and proton cyclotron instabilities. Initially, the mirror waves dominate the proton cyclotron waves, even when the system is below the linear mirror threshold, but as time increases the proton cyclotron waves become dominant in the low beta region. We also include an initial comparison of the simulated data with Cluster observations.
机译:我们使用二维混合扩展盒模拟研究了慢膨胀对磁石场等离子体和低频波的影响。我们从均质的高β等离子体开始我们的仿真,该等离子体对反射镜和质子回旋加速器的不稳定性几乎是稳定的。扩展是作为外力施加的:模拟箱的物理尺寸在两个维度上增加:一个相对于环境磁场平行,另一个相对于环境磁场垂直。这种膨胀导致质子β的连续减少,并导致质子温度各向异性的增加。在模拟的早期阶段,同时出现了镜像和质子回旋波。该系统针对反射镜和质子回旋加速器的不稳定性建立了一个边缘稳定状态。最初,即使系统在线性镜面阈值以下,镜像波仍将主导质子回旋波,但随着时间的增加,质子回旋波将在低β区域占主导地位。我们还包括对模拟数据与聚类观测值的初步比较。

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