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MMS Observations of Accelerated Interstellar Pickup He+ Ions at an Interplanetary Shock

机译:在行星际休克时,MMS对加速星际拾取器HE +离子的观察

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Interstellar pickup ions (PUI) are interstellar neutrals that have been ionized in transit through the heliosphere via charge exchange or photoionization. These new PUIs then "freeze" into the solar wind (SW) and move with the bulk SW velocity (V _(SW)). They also begin to gyrate around the local magnetic field with V _(SW), resulting in a maximum PUI velocity of 2 ? V _(SW). Understanding how He~(+) PUIs are accelerated at shocks in space provides valuable insights into shock dynamics and shock acceleration mechanisms. On 2018 January 8, while the Magnetospheric Multiscale (MMS) Mission was in the SW, it observed the forward shock of a corotating interaction region. In this work, we analyze the upstream and downstream velocity distributions of He~(+) for this quasiperpendicular, marginally supercritical (θ _(Bn) = 67°, M _(A ) = 2.8) interplanetary shock. We derive average two-dimensional pitch-angle distributions in the field-aligned SW frame, as well as reduced one-dimensional velocity distributions for selected upstream and downstream intervals. We find that the shock accelerates He~(+) largely perpendicular to the magnetic field, consistent with shock reflection. Furthermore, we derive a measured ratio of accelerated He~(+) ions by estimating a maximum speed in the downstream frame, above which we assume that He~(+) ions have been accelerated by their interaction with the shock. The measured acceleration ratio, R _(Measured)?=?0.14, is then compared to a theoretical ratio derived from a simple model of the upstream distribution, R _(Theoretical)?=?0.06.
机译:星际拾取离子(PUI)是通过电荷交换或光离子通过氦层通过氦层被电离的星际中性。然后,这些新的PUI将“冻结”进入太阳风(SW)并使用批量SW速度移动( v _(SW))。它们还开始在局部磁场周围与v _(SW)绕局部磁场,导致最大脓液速度为2? v _(sw)。了解HE〜(+)PUI如何在空间冲击时加速,为冲击动力学和冲击加速机制提供有价值的见解。 2018年1月8日,虽然磁体多尺度(MMS)任务在SW中,但它观察到CoroTate互动区域的前向冲击。在这项工作中,我们分析了他〜(+)的上游和下游速度分布,对于这种QuaSiperpencular,边缘超临界(θ_(bn)= 67°, m _( a)= 2.8 )行星际震动。我们推出了场对准的SW帧中的平均二维间距分布,以及用于所选上游和下游间隔的一维速度分布。我们发现冲击加速了他〜(+)在很大程度上垂直于磁场,与冲击反射一致。此外,我们通过估计下游框架中的最大速度来得出加速HE〜(+)离子的测量比,我们假设他〜(+)离子通过与休克的相互作用加速。然后将测量的加速度 R _(测量)?=Δ=Δ=Δ= 0.14,与上游分布的简单模型, R _(理论)?=?0.06。

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