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Limits for the Firehose Instability in Space Plasmas

机译:等离子体中火喉不稳定性的限制

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Electromagnetic instabilities in high-beta plasmas, where beta is the ratio of the kinetic plasma energy to the magnetic energy, have a broad range of astrophysical applications. The presence of temperature anisotropies T (ayen) /T (aSyen) > 1 (where ayen and aSyen denote directions relative to the background magnetic field) in solar flares and the solar wind is sustained by the observations and robust acceleration mechanisms that heat plasma particles in the parallel direction. The surplus of parallel kinetic energy can excite either the Weibel-like instability (WI) of the ordinary mode perpendicular to the magnetic field or the firehose instability (FHI) of the circularly polarized waves at parallel propagation. The interplay of these two instabilities is examined. The growth rates and the thresholds provided by the kinetic Vlasov -aEuro parts per thousand Maxwell theory are compared. The WI is the fastest growing one with a growth rate that is several orders of magnitude larger than that of the FHI. These instabilities are however inhibited by the ambient magnetic field by introducing a temperature anisotropy threshold. The WI admits a larger anisotropy threshold, so that, under this threshold, the FHI remains the principal mechanism of relaxation. The criteria provided here by describing the interplay of the WI and FHI are relevant for the existence of these two instabilities in any space plasma system characterized by an excess of parallel kinetic energy.
机译:高β等离子体中的电磁不稳定性(其中β是等离子体动能与磁能之比)具有广泛的天体物理应用。太阳耀斑中存在温度各向异性T(ayen)/ T(aSyen)> 1(其中ayen和aSyen表示相对于背景磁场的方向),并且通过观察和加热等离子体粒子的强大加速机制来维持太阳风在平行方向上。多余的平行动能会激发垂直于磁场的普通模的威贝尔式不稳定性(WI)或圆极化波在平行传播时的流线型不稳定性(FHI)。研究了这两个不稳定性的相互作用。比较了动力学和Vlasov -aEuro千分之一麦克斯韦理论提供的阈值。 WI是增长最快的一种,其增长率比FHI大几个数量级。然而,通过引入温度各向异性阈值,这些不稳定性被周围磁场抑制。 WI允许较大的各向异性阈值,因此在此阈值下,FHI仍然是松弛的主要机制。这里通过描述WI和FHI的相互作用提供的标准与在以平行动能过量为特征的任何空间等离子体系统中这两种不稳定性的存在有关。

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