首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Particle Beams in the Vicinity of Magnetic Separatrix According to Near-Lunar ARTEMIS Observations
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Particle Beams in the Vicinity of Magnetic Separatrix According to Near-Lunar ARTEMIS Observations

机译:粒子束附近的磁场据Near-Lunar分隔号阿耳特弥斯观察

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摘要

We study characteristics of ion and electron beams observed during 101 crossings of the near-separatrix region by Acceleration, Reconnection, Turbulence and Electrodynamics of the Moon's Interaction with the Sun (ARTEMIS) spacecraft in the magnetotail. We found that accelerated ion beams are observed under any level of geomagnetic activity. A duration of earthward moving ion beams is statistically longer (≤ 10 min) than a duration of tailward ion beams (≤ 4 min), which can be due to the transient character of ion acceleration in the vicinity of the near-Earth neutral line (NENL). Energetic characteristics of earthward and tailward ion beams are similar indicating similar acceleration conditions at ion kinetic scales at both sides of an X line independently of its location. Conversely, electron velocity distributions observed near magnetic separatrix earthward of the distant neutral line (DNL) differ from those observed tailward of the NENL. Earthward of the DNL a scattered and thermalized electron population without energetic field-aligned beams is observed near the separatrix. On the contrary, tailward of the NENL field-aligned electron beams accelerated to a few kiloelectron volts are detected. These observations show that near DNL the electron scattering and thermalization dominate over the direct acceleration, whereas stronger electric fields in the NENL produce substantial population of field-aligned kiloelectron volt electrons.
机译:我们研究离子和电子束的特征观察到在101年口岸的near-separatrix地区加速,重新连接,动荡和电动力学月亮与太阳的交互(阿耳特弥斯)飞船在磁尾。在任何有加速的离子光束地磁活动的水平。向地面移动的离子光束统计(≤10分钟)超过tailward离子的持续时间梁(≤4 min),这可能是由于瞬态的离子加速附近的近地中性线(NENL)。精力充沛的特点向地面tailward离子光束表明类似的是相似的加速条件离子动能尺度双方的X线独立的位置。分布观察磁分界线附近向地球的遥远的中性线(黑暗)不同于那些观察tailward NENL。向地球的黑暗与分散和热化电子人口没有精力充沛field-aligned梁观察附近分界线。field-aligned电子束加速几检测到kiloelectron伏。观测表明,黑暗与电子附近散射和热化主导直接的加速度,而强大的电力字段NENL产生大量的人口的field-aligned kiloelectron电子伏特。

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