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Modeling of the outer electron belt during magnetic storms

机译:磁暴期间外电子带的建模

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The flux dropout of relativistic electrons in the earth's outer radiation belt, during the main phase of the 26 March 1995 magnetic storm is examined. Outer belt measurements by the Radiation Environment Monitor, REM aboard the STRV-1b satellite are presented to characterize this dropout. In order to simulate the dynamics of the electron belt during the storm main phase a particle tracing code was developed which allows to trace the trajectories of equatorially mirroring electrons in a dynamic magnetospheric electromagnetic field. Two simulations were performed in a non-stationary magnetic field, one taking only the induced electric held into account (fully adiabatic motion), and one with an additional non-stationary convection electric field. The simulations show, that adiabatic deceleration can produce the observed count rate decrease and also the observed inward motion of the count rate peak. The convection electric field causes diffusion, which can take particles from low L values out to the magnetopause and contribute to an additional loss of particles, which is suggested by the observations. (C) 1999 Elsevier Science Ltd. All rights reserved. [References: 18]
机译:在1995年3月26日磁暴的主要阶段,研究了地球相对辐射带中相对论电子的通量下降。展示了STRV-1b卫星上REM环境的辐射环境监测仪进行的外带测量,以表征这种脱落。为了模拟风暴主相期间电子带的动力学,开发了粒子追踪代码,该代码可以追踪动态磁层电磁场中赤道镜像电子的轨迹。在非平稳磁场中进行了两次仿真,其中一次仅考虑了感应电(完全绝热运动),另一次具有附加的非平稳对流电场。仿真表明,绝热减速会导致观察到的计数率下降,以及观察到的计数率峰值向内运动。对流电场引起扩散,这可以将低L值的颗粒带到磁层顶,并造成颗粒的额外损失,这是观察结果所表明的。 (C)1999 Elsevier ScienceLtd。保留所有权利。 [参考:18]

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