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Pickup ion-mediated plasma physics of the outer heliosphere and very local interstellar medium

机译:吸收离子介导的外部太阳圈和非常局部的星际介质的等离子体物理学

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Abstract Observations of plasma and turbulence in the outer heliosphere (the distant supersonic solar wind and the subsonic solar wind beyond the heliospheric termination shock) made by the Voyager Interstellar Mission and the energetic neutral atom observations made by the IBEX spacecraft have revealed that the underlying plasma in the outer heliosphere and very local interstellar medium (VLISM) comprises distinct thermal proton and electron and suprathermal pickup ion (PUI) populations. Estimates of the appropriate collisional frequencies show that the multi-component plasma is not collisionally equilibrated in either the outer heliosphere or VLISM. Furthermore, suprathermal PUIs in these regions form a thermodynamically dominant component. We review briefly a subset of the observations that led to the realization that the solar wind–VLISM interaction region is described by a non-equilibrated multi-component plasma and summarizes the derivation of suitable plasma models that describe a PUI-mediated plasma.
机译:摘要:Voyager星际飞行任务对外太阳圈的等离子和湍流(远距离超音速太阳风和超音速太阳风超出了太阳球终止冲击的观测)以及IBEX航天器的高能中性原子观测表明,潜在的等离子在外太阳圈和非常局部的星际介质(VLISM)中,包括不同的热质子,电子和超热吸收离子(PUI)种群。适当的碰撞频率的估计表明,多组分等离子体在外部太阳圈或VLISM中都没有碰撞平衡。此外,这些区域中的超热PUI形成了热力学上占主导地位的组件。我们简要回顾了一些观察结果的子集,这些发现导致人们认识到,太阳风与VLISM相互作用区域是由非平衡多组分等离子体描述的,并总结了描述PUI介导等离子体的合适等离子体模型的推导。

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