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Observations of the spatial and temporal structure of field-aligned beam and gyrating ring distributions at the quasi-perpendicular bow shock with Cluster CIS

机译:簇状CIS对准垂直弓形激波场对准光束和回转环分布的时空结构观察

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摘要

During the early orbit phase, the Cluster spacecraft have repeatedly crossed the perpendicular Earth’s bow shock and provided the first multi-spacecraft measurements. We have analyzed data from the Cluster Ion Spectrometry experiment (CIS), which observes the 3D-ion distribution function of the major species in the energy range of 5 eV to 40 keV with a 4 s resolution. Beams of reflected ions were observed simultaneously at all spacecraft locations and could be tracked from upstream to the shock itself. They were found to originate from the same distribution of ions that constitutes the reflected gyrating ions, which form a ring distribution in the velocity space immediately upstream and downstream of the shock. This observation suggests a common origin of ring and beam populations at quasi-perpendicular shocks in the form of specular reflection and immediate pitch angle scattering. Generally, the spatial evolution across the shock is very similar on all spacecraft, but phased in time according to their relative location. However, a distinct temporal structure of the ion fluxes in the field-aligned beam is observed that varies simultaneously on all spacecraft. This is likely to reflect the variations in the reflection and scattering efficiencies.Interplanetary physics (planetary bow shocks; energetic particles; instruments and techniques)
机译:在轨道的早期阶段,星团型航天器反复越过了地球的垂直弓形冲击,并进行了首次多航天器测量。我们分析了簇离子光谱实验(CIS)的数据,该数据观察了主要物种在5 eV至40 keV能量范围内具有4 s分辨率的3D离子分布函数。在所有航天器位置同时观察到反射离子束,并且可以从上游到冲击本身进行跟踪。发现它们源自构成反射的旋转离子的相同离子分布,这些离子在冲击的上游和下游在速度空间中形成环分布。该观察结果表明,镜面反射和立即俯仰角散射的形式是准垂直冲击时环形和横梁群的共同起源。通常,在所有航天器上,整个冲击过程的空间演变非常相似,但会根据其相对位置在时间上逐步变化。但是,在所有航天器上都观察到了场对准束中离子流的独特的时间结构。这可能反映了反射和散射效率的变化。行星际物理学(行星弓激波;高能粒子;仪器和技术)

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