论文标题

高能中性原子模拟揭示的太阳能磁场将Heliosheath等离子体限制

The Confinement of the Heliosheath Plasma by the Solar Magnetic Field as Revealed by Energetic Neutral Atom Simulations

论文作者

Kornbleuth, M., Opher, M., Michael, A. T., Sokol, J. M., Toth, G., Tenishev, V., Drake, J. F.

论文摘要

传统上,太阳能磁场被认为在地球球的外部区域具有可忽略的作用。最近的作品表明,太阳能磁场可能在直系壳中的血浆中起着至关重要的作用。星际边界探索者(IBEX)对螺旋尾的观察表明,纬度结构在能量中性原子(ENA)通量中随着能量而变化。在能量〜1 keV时,ENA通量在低纬度和杆子附近的ENA缺陷处显示出增强。在能量> 2.7 keV时,ENA通量在低纬度内存在缺陷,并且在电线杆附近较高的ENA通量裂片。该ENA结构最初被解释为太阳风期间太阳风的纬度剖面的结果。我们扩展了Kornbleuth等人的工作。 (2018)使用太阳能最小条件和最近开发的盾牌模型。屏蔽模型将磁流失动力学(MHD)等离子体溶液与中性氢的动力学描述。我们表明,尽管太阳能最小值期间太阳风的纬度轮廓有助于ENA地图中的裂片,但太阳能磁场的准确性对于创建和塑造IBEX观察到的增强ENA Flux的两个高纬度裂片很重要。这是探索不断变化的太阳能磁场强度对ENA图的影响的第一项工作。我们的发现表明,IBEX提供了通过太阳能磁场对Heliosheath血浆准直的观察证据。

Traditionally, the solar magnetic field has been considered to have a negligible effect in the outer regions of the heliosphere. Recent works have shown that the solar magnetic field may play a crucial role in collimating the plasma in the heliosheath. Interstellar Boundary Explorer (IBEX) observations of the heliotail indicated a latitudinal structure varying with energy in the energetic neutral atom (ENA) fluxes. At energies ~1 keV, the ENA fluxes show an enhancement at low latitudes and a deficit of ENAs near the poles. At energies >2.7 keV, ENA fluxes had a deficit within low latitudes, and lobes of higher ENA flux near the poles. This ENA structure was initially interpreted to be a result of the latitudinal profile of the solar wind during solar minimum. We extend the work of Kornbleuth et al. (2018) by using solar minimum-like conditions and the recently developed SHIELD model. The SHIELD model couples the magnetohydrodynamic (MHD) plasma solution with a kinetic description of neutral hydrogen. We show that while the latitudinal profile of the solar wind during solar minimum contributes to the lobes in ENA maps, the collimation by the solar magnetic field is important in creating and shaping the two high latitude lobes of enhanced ENA flux observed by IBEX. This is the first work to explore the effect of the changing solar magnetic field strength on ENA maps. Our findings suggest that IBEX is providing the first observational evidence of the collimation of the heliosheath plasma by the solar magnetic field.

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