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Generation of EMICWaves and Effects on Particle Precipitation During a Solar Wind Pressure Intensification With B_z 0

机译:代EMICWaves和对粒子的影响降水在太阳风的压力强化与说是 0

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摘要

During geomagnetic storms, some fraction of the solar wind energy is coupled via reconnection at the dayside magnetopause, a process that requires a southward interplanetary magnetic field B_z. Through a complex sequence of events, some of this energy ultimately drives the generation of electromagnetic ion cyclotron (EMIC) waves, which can then scatter energetic electrons and ions from the radiation belts. In the event described in this paper, the interplanetary magnetic field remained northward throughout the event, a condition unfavorable for solar wind energy coupling through low-latitude reconnection. While this resulted in SYM/H remaining positive throughout the event (so this may not be considered a storm, in spite of the very high solar wind densities), pressure fluctuations were directly transferred into and then propagated throughout the magnetosphere, generating EMIC waves on global scales. The generation mechanism presumably involved the development of temperature anisotropies via perpendicular pressure perturbations, as evidenced by strong correlations between the pressure variations and the intensifications of the waves globally. Electron precipitation was recorded by the Balloon Array for RBSP Relativistic Electron Losses balloons, although it did not have the same widespread signatures as the waves and, in fact, appears to have been quite patchy in character. Observations from Van Allen Probe A satellite (at postmidnight local time) showed clear butterfly distributions, and it may be possible that the EMIC waves contributed to the development of these distribution functions. Ion precipitation was also recorded by the Polar-orbiting Operational Environmental Satellite satellites, though tended to be confined to the dawn-dusk meridians.
机译:磁暴期间,一些分数的太阳能风能耦合通过重新连接昼磁层,这一过程需要向南的行星际磁场说是。通过一系列复杂的事件,一些这种能量最终驱动的生成电磁离子回旋波(位的)可以分散精力充沛的电子和离子从辐射带。在本文中,行星际磁场整个事件,一直向北太阳能风能条件不利通过低纬度重新连接耦合。这导致SYM / H保持积极整个事件(这可能不是认为是一个风暴,尽管非常高太阳能风能密度)、压力波动直接转移到然后传播整个磁层,产生位的在全球尺度上。可能涉及的发展温度通过垂直各向异性压力扰动,强就证明了这一点压力变化和之间的相关性全球海浪的强化。电子降水记录了气球数组RBSP相对论性电子损失的气球,虽然它没有海浪一样广泛的签名,并在事实上,似乎是在很不完整的的性格。在postmidnight卫星(当地时间)清晰的蝴蝶分布,和可能位的可能导致了这些分布函数的发展。降水也记录下了极轨运行环境卫星的卫星,但往往是局限于dawn-dusk经络。

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