首页> 外文期刊>The Astrophysical Journal. Letters >PLASMA FLOWS AT VOYAGER 2 AWAY FROM THE MEASURED SUPRATHERMAL PRESSURES
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PLASMA FLOWS AT VOYAGER 2 AWAY FROM THE MEASURED SUPRATHERMAL PRESSURES

机译:距离测量的超热压力在VOYAGER 2处的等离子体流动

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Plasma flows measured by Voyager 2 show a clear rotation away from radially outward with increasing penetration into the inner heliosheath while the overall flow speed remains roughly constant. However, the direction of rotation is far more into the transverse, and less into the polar direction, than predicted. No current model reproduces the key observational results of (1) the direction of flow rotation or (2) constancy of the flow speed. Here we show that the direction is consistent with flow away from the region of maximum pressure in the inner heliosheath, ~20? south of the upwind direction, as measured by the Interstellar Boundary Explorer (IBEX). Further, we show that the dominance of the suprathermal ion pressure in the inner heliosheath measured by IBEX can explain both the observed flow rotation and constancy of the flow speed. These results indicate the critical importance of suprathermal ions in the physics of the inner heliosheath and have significant implications for understanding this key region of the heliosphere's interstellar interaction and astrophysical plasmas more broadly.
机译:Voyager 2测得的血浆流量显示出明显的旋转,远离径向向外旋转,同时增加了对内部螺旋鞘的渗透,而总体流速却保持大致恒定。但是,旋转方向比预计的方向更多地进入横向方向,而更少进入极地方向。当前的模型都没有再现(1)流动旋转方向或(2)流速恒定的关键观测结果。在这里,我们表明方向与流向远离内部日鞘中最大压力区域〜20?的方向一致。由星际边界浏览器(IBEX)测量的逆风方向向南。此外,我们表明,IBEX测量的内部日鞘中超热离子压力的优势可以解释观察到的流动旋转和流动速度的恒定性。这些结果表明超热离子在内部日鞘的物理学中至关重要,并且对于更广泛地了解日球层星际相互作用和天体等离子体的这一关键区域具有重要意义。

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