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THE RADIATION BELTS AND RING CURRENT: THE RELATIONSHIP BETWEEN DST AND RELATIVISTIC ELECTRON PHASE SPACE DENSITY

机译:辐射带和环电流:DST和相对论电子相空间密度之间的关系

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摘要

We briefly review the radiation belts, before moving on to a more detailed examination of the relationship between the Disturbance Storm Time Index (Dst) and relativistic electron flux. We show that there is a strong correlation between the growth phase of storms, as represented by Dst, and dropouts in electron flux. Recovery is accompanied by growth of the electron flux. We calculate Electron Phase Space Density (PSD) as a function of adiabatic invariants using electron particle measurements from the Imaging Electron Sensor (IES) and the High Sensitivity Telescope (HIST) on the CEPPAD experiment onboard POLAR. We present the time history of the phase space density through the year 1998 as L-sorted plots and look in detail at the May 98 storm. Comparison with the Tsyganenko 96 magnetic field model prediction for the last closed field line suggests that the loss of electrons may be directly caused by the opening of drift shells.
机译:我们简要介绍了辐射带,然后再进入更详细地检查干扰雨时间指数(DST)和相对论电子通量之间的关系。我们表明风暴的生长阶段与DST所代表的增长阶段之间存在强烈的相关性,并在电子通量中丢失。恢复伴随着电子通量的增长。我们将电子相空间密度(PSD)计算为使用来自成像电子传感器(IES)的电子颗粒测量和高灵敏度望远镜(HIST)在北极地上的电子粒子测量的函数。我们将阶段空间密度的时间历史通过1998年作为L-Sorfed Plotots,并在5月98日风暴中详细描述。与TSYGANENKO 96的最后一个封闭场线的磁场模型预测的比较表明电子的损耗可以由漂移壳的开口直接引起。

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