首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Pickup ion acceleration in the successive appearance of corotating interaction regions
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Pickup ion acceleration in the successive appearance of corotating interaction regions

机译:皮卡在连续离子加速共转的交互区域

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Acceleration of pickup ions (PUIs) in an environment surrounded by a pair of corotating interaction regions (CIRs) was investigated by numerical simulations using a hybrid code. Energetic particles associated with CIRs have been considered to be a result of the acceleration at their shock boundaries, but recent observations identified the ion flux peaks in the sub-MeV to MeV energy range in the rarefaction region, where two separate CIRs were likely connected by the magnetic field. Our simulation results confirmed these observational features. As the accelerated PUIs repeatedly bounce back and forth along the field lines between the reverse shock of the first CIR and the forward shock of the second one, the energetic population is accumulated in the rarefaction region. It was also verified that PUI acceleration in the dual CIR system had two different stages. First, because PUIs have large gyroradii, multiple shock crossing is possible for several tens of gyroperiods, and there is an energy gain in the component parallel to the magnetic field via shock drift acceleration. Second, as the field rarefaction evolves and the radial magnetic field becomes dominant, Fermi-type reflection takes place at the shock. The converging nature of two shocks results in a net energy gain. The PUI energy acquired through these processes is close to 0.5 MeV, which may be large enough for further acceleration, possibly resulting in the source of anomalous cosmic rays.
机译:加速度传感器离子(结果)由一对共转包围的环境中互动区域(cir)调查数值模拟使用混合的代码。高能粒子与贵会有关联被认为是一个结果的加速度冲击的边界,但是最近的观察确定了离子通量的山峰在sub-MeV兆电子伏能量范围稀疏的地区,两个独立的新闻调查中心在哪里可能连接的磁场。仿真结果证实了这些观察特性。沿着磁力线来回反弹第一个背景和之间的反向冲击第二个向前冲击,精力充沛的人口中积累稀疏的地区。双圆系统有两个加速度不同的阶段。gyroradii,多个冲击穿越是可能的数几十gyroperiods,和有一个平行于能源获得组件通过冲击磁场漂移加速度。第二,稀疏的演变和字段径向磁场成为占主导地位的,Fermi-type反射发生在冲击。两个冲击结果的收敛性质净能量增益。这些过程接近0.5兆电子伏,这可能是足够大的进一步加速,可能导致异常的宇宙射线的来源。

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