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首页> 外文期刊>The Astrophysical journal >PARTICLE ACCELERATION IN SOLAR WIND COMPRESSION REGIONS
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PARTICLE ACCELERATION IN SOLAR WIND COMPRESSION REGIONS

机译:太阳风压缩区域的颗粒加速

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摘要

We present the results of a theoretical investigation of the acceleration of charged particles in regions of gradual solar wind compression. The mechanism we describe is similar to diffusive shock acceleration, except that it invokes a gradual compression of the plasma over many gyroradii rather than a shock. Recent observations of energetic particles associated with corotating interaction regions (CIRs) at 1 AU suggest that the particles were accelerated within the compression region between the fast and slow solar wind rather than at the associated forward and reverse shocks, which are at larger heliocentric distances. We show that nondiffu-sive effects such as magnetic mirroring are important in the inner heliosphere, particularly the injection of low-energy particles (e.g., pickup ions and suprathermal solar wind ions). We integrate the trajectories of an ensemble of test particles moving in synthesized electromagnetic fields, which are similar to what is currently known about corotating interaction regions in the inner heliosphere, prior to the formation of the forward and reverse shocks. We show that compression regions associated with CIRs at 1 AU with widths ~0.03 AU can accelerate particles up to ~10 MeV and produce energy spectra which are remarkably similar to recent observations.
机译:我们提出了对太阳风逐渐压缩区域中的带电粒子加速进行理论研究的结果。我们描述的机制类似于扩散冲击加速度,不同之处在于它在许多回旋半径上而不是冲击上引起等离子体的逐渐压缩。最近在1 AU处与同向相互作用区域(CIR)相关的高能粒子的观察结果表明,该粒子在快风和慢风之间的压缩区域内加速,而不是在较大的日心距下的相关正向和反向冲击中被加速。我们显示出非扩散效应(例如磁镜)在内部日球层中非常重要,特别是低能粒子(例如,吸收离子和超热太阳风离子)的注入。我们对在合成电磁场中移动的测试粒子的整体轨迹进行积分,这与在形成正向和反向震动之前,内部球体中的相互作用区域相互旋转的当前已知情况相似。我们发现,与CIR相关的压缩区域在1 AU处的宽度约为0.03 AU,可以使粒子加速到约10 MeV,并产生与最近的观测结果非常相似的能谱。

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