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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Energy‐dependent evolution of ring current protons during magnetic storms
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Energy‐dependent evolution of ring current protons during magnetic storms

机译:能源的依赖当前环质子的进化在磁性风暴

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The storm time evolution of equatorially mirroring H~+ ions in the inner magnetosphere has been statistically examined by using data from the Polar satellite. We focused on two energy ranges of H~+ observed by Polar; 31–80 keV and 125–173 keV, which are referred to as low‐ and high‐energy components, respectively. The following two phases were defined; the developing phase (pre‐storm time to near the most disturbed time) and the declining phase (near the most disturbed time to post‐storm time), which is 3 days before (after) the equatorial crossing of Polar during the storm time. We obtained the following results: (1) Low‐energy H~+ tends to increase during the developing, and to decrease during the declining at all magnetic local times (MLTs) except for the pre‐noon sector. (2) The low‐energy H~+ is anti‐correlated with the magnetic field, probably indicating that the low‐energy H~+ reduces the equatorial magnetic field due to a diamagnetic effect. (3) High‐energy H~+ tends to increase on the dayside during the declining phase. (4) The high‐energy H~+ is poorly correlated with the magnetic field. High‐energy H~+ behaves significantly different from the low‐energy H~+, and that some process other than betatron acceleration, diffusion and substorm‐associated injection could have been responsible for the variation of the high‐energy H~+.
机译:赤道镜像的风暴时间演化H ~ +离子的磁气圈通过使用数据统计研究极地卫星。H ~ +观察到极地;凯文,这被称为低》高能源组件,分别。后两个阶段定义;阶段(提前风暴最打扰附近时间)和下降阶段(最靠近干扰时间发布时间风暴),这是3天前(后)的赤道穿越极地风暴期间。以下结果:(1)低量能量H ~ +倾向在发展中提高,减少在所有磁本地时间在下降(mlt)除了中午提前部门。低量能量H ~ +是反相关的磁场,可能表明低量能量H ~ +降低了赤道磁场由于抗磁性的影响。高能源H ~ +的光面上往往会增加在下降阶段。H ~ +不好与磁场有关。高能源H ~ +表现明显不同从低能量应承担的H ~ +,和一些过程除了电子感应加速器加速,扩散亚暴量注射可能是有关负责高的能量的变化

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