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ARTEMIS在月球观测到的压缩性太阳风-磁异常相互作用的分布及太阳风控制

Distribution and solar wind control of compressional solar wind-magnetic anomaly interactions observed at the Moon by ARTEMIS.

作者信息

Halekas J S, Poppe A R, Lue C, Farrell W M, McFadden J P

机构信息

Department of Physics and Astronomy, University of Iowa, Iowa City, Iowa, USA.

Solar System Exploration Research Virtual Institute, NASA Ames Research Center, Moffett Field, California, USA.

出版信息

J Geophys Res Space Phys. 2017 Jun;122(6):6240-6254. doi: 10.1002/2017ja023931. Epub 2017 Jun 7.

Abstract

A statistical investigation of 5 years of observations from the two-probe Acceleration, Reconnection, Turbulence, and Electrodynamics of Moon's Interaction with the Sun (ARTEMIS) mission reveals that strong compressional interactions occur infrequently at high altitudes near the ecliptic but can form in a wide range of solar wind conditions and can occur up to two lunar radii downstream from the lunar limb. The compressional events, some of which may represent small-scale collisionless shocks ("limb shocks"), occur in both steady and variable interplanetary magnetic field (IMF) conditions, with those forming in steady IMF well organized by the location of lunar remanent crustal magnetization. The events observed by ARTEMIS have similarities to ion foreshock phenomena, and those observed in variable IMF conditions may result from either local lunar interactions or distant terrestrial foreshock interactions. Observed velocity deflections associated with compressional events are always outward from the lunar wake, regardless of location and solar wind conditions. However, events for which the observed velocity deflection is parallel to the upstream motional electric field form in distinctly different solar wind conditions and locations than events with antiparallel deflections. Consideration of the momentum transfer between incoming and reflected solar wind populations helps explain the observed characteristics of the different groups of events.

摘要

对双探针太阳与月球相互作用的加速、重联、湍流及电动力学(ARTEMIS)任务5年观测数据的统计研究表明,强烈的压缩相互作用在黄道附近的高海拔地区很少发生,但能在广泛的太阳风条件下形成,且可出现在月缘下游多达两个月球半径的位置。这些压缩事件,其中一些可能代表小规模无碰撞激波(“边缘激波”),在稳定和变化的行星际磁场(IMF)条件下都会发生,在稳定IMF中形成的事件由月球剩余地壳磁化位置很好地组织起来。ARTEMIS观测到的事件与离子前震现象有相似之处,在变化的IMF条件下观测到的事件可能源于当地月球相互作用或遥远的地球前震相互作用。与压缩事件相关的观测到的速度偏转总是从月球尾迹向外,与位置和太阳风条件无关。然而,观测到的速度偏转与上游运动电场平行的事件,其形成的太阳风条件和位置与偏转方向相反的事件明显不同。考虑入射和反射太阳风群体之间的动量传递有助于解释不同事件组的观测特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4359/7816726/761e90598715/nihms-1658227-f0001.jpg

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