太阳轨道器观测到的太阳风pestchek类磁重联事件中α粒子的动力学特征

D. Duan, Jiansen He, Xingyu Zhu, Rui Zhuo, Ziqi Wu, G. Nicolaou, Jia Huang, D. Verscharen, Liu Yang, C. Owen, A. Fedorov, P. Louarn, T. Horbury
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引用次数: 0

摘要

磁重联对太阳风粒子的加速和加热是空间物理中的重要机制。虽然α粒子(4He2+)是第二丰富的太阳风离子,但它们在太阳风磁重联中的动力学行为尚不清楚。利用太阳轨道飞行器上的太阳风分析仪/质子- α传感器的高能(1500-3000 eV)范围,研究了弱引导场下pestchek型太阳风重联事件排气区α粒子的动力学特征。在排气区观察到一对背靠背的复合不连续。我们发现磁排气区的等离子体被加热并受到慢激波(SSs)的约束,而加速重联射流则受到旋转不连续(RDs)的约束。ss位于rd之外,这是磁流体动力学预测所没有预料到的。我们认为这种不连续性的不同位置是由于增强的平行温度T p∥> T p⊥,这降低了排气区域的局部alfv速度,使SSs比rd传播得更快。在排气区域内,引导场占主导地位。我们发现了粒子的双居分布。这两个粒子群的磁场排列在ss的下游,并在重联射流中发生垂直偏移,这表明rd处磁场的变化与质子回旋周期具有相似的时间尺度,但比α粒子的变化要快,因此α粒子的行为就像拾取离子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Kinetic Features of Alpha Particles in a Pestchek-like Magnetic Reconnection Event in the Solar Wind Observed by Solar Orbiter
The acceleration and heating of solar wind particles by magnetic reconnection are important mechanisms in space physics. Although alpha particles (4He2+) are the second most abundant population of solar wind ions, their kinetic behavior in solar wind magnetic reconnection is not well understood. Using the high-energy (1500–3000 eV) range of the Solar Wind Analyser/Proton–Alpha Sensor instrument on board Solar Orbiter, we study the kinetic features of alpha particles in an exhaust region of a Pestchek-like solar-wind reconnection event with a weak guide field. A pair of back-to-back compound discontinuities is observed in the exhaust region. We find that the plasma in the magnetic exhaust region is heated and bounded by slow shocks (SSs), while the accelerated reconnection jet is bounded by rotational discontinuities (RDs). The SSs are outside the RDs, which is not expected from the magnetohydrodynamical prediction. We suggest this different location of the discontinuities is due to the enhanced parallel temperature T p∥ > T p⊥, which reduces the local Alfvén speed in the exhaust region, allowing the SSs to propagate faster than the RDs. Inside the exhaust region, the guide field is dominant. We find a two-population distribution of the alpha particles. These two populations are field aligned downstream the SSs and shift to have a perpendicular offset in the reconnection jet, suggesting that the change of the magnetic field at the RDs has similar timescales with the proton gyroperiod, but faster than those of the alpha particles, such that the alpha particles behave like pickup ions.
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