首页> 外文期刊>The Astrophysical journal >THE EFFECTS OF PLASMA BETA AND ANISOTROPY INSTABILITIES ON THE DYNAMICS OF RECONNECTING MAGNETIC FIELDS IN THE HELIOSHEATH
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THE EFFECTS OF PLASMA BETA AND ANISOTROPY INSTABILITIES ON THE DYNAMICS OF RECONNECTING MAGNETIC FIELDS IN THE HELIOSHEATH

机译:血浆β和各向异性对氦鞘内重磁场动力学的影响。

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The plasma β (the ratio of the plasma pressure to the magnetic pressure) of a system can have a large effect on its dynamics as high β enhances the effects of pressure anisotropies. We investigate the effects of β in a system of stacked current sheets that break up into magnetic islands due to magnetic reconnection, which is analogous to the compressed heliospheric current sheet in the heliosheath. We find significant differences between systems with low and high initial values of β. At low β, growing magnetic islands are modestly elongated and become round as contraction releases magnetic stress and reduces magnetic energy. At high β, the increase of the parallel pressure in contracting islands causes saturation of modestly elongated islands as island cores approach the marginal firehose condition. Only highly elongated islands reach finite size. The anisotropy within these islands prevents full contraction, leading to a final state of highly elongated islands in which further reconnection is suppressed. The elongation of islands at finite β is further enhanced by reducing the electron-to-ion mass ratio to more realistic values. The results are directly relevant to reconnection in the sectored region of the heliosheath where there is evidence that elongated islands are present, and possibly to other high-β systems such as astrophysical accretion flows and the magnetosphere of Saturn.
机译:系统的血浆β(血浆压力与磁压之比)会对系统的动力学产生很大影响,因为高β会增强压力各向异性的影响。我们研究了β在堆叠的电流板系统中的影响,该系统由于磁重新连接而分裂成磁岛,这类似于日鞘中的压缩的日光层电流板。我们发现具有低和高初始值的系统之间存在显着差异。在低β值时,随着收缩释放磁应力并减少磁能,正在生长的磁岛会适度地伸长并变圆。在高β值时,随着岛芯接近边缘水烟条件,收缩岛中平行压力的增加会导致适度拉长的岛饱和。只有高度伸长的岛才能达到有限的大小。这些岛内的各向异性阻止了完全收缩,从而导致高度伸长的岛的最终状态,其中进一步的重新连接受到抑制。通过将电子与离子的质量比降低到更实际的值,可以进一步增强岛在有限β处的伸长率。该结果与在有证据表明存在细长岛的日鞘的扇形区域中的重新连接直接相关,并且可能与其他高β系统(如天体增生流和土星的磁层)有关。

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