首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Modeling the entry and trapping of solar energetic particles in the magnetosphere during the November 24-25, 2001 storm
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Modeling the entry and trapping of solar energetic particles in the magnetosphere during the November 24-25, 2001 storm

机译:建模的入口和捕获太阳能精力充沛粒子在磁气圈2001年11月24 - 25日,风暴

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We have modeled the entry of solar energetic particles (SEPs) into the magnetosphere during the November 24-25, 2001 magnetic storm and the trapping of particles in the inner magnetosphere. The study used the technique of following many test particles, protons with energies greater than about 100 keV, in the electric and magnetic fields from a global magnetohydrodynamic (MHD) simulation of the magnetosphere during this storm. SEP protons formed a quasi-trapped and trapped population near and within geosynchronous orbit. Preliminary data comparisons show that the simulation does a reasonably good job of predicting the differential flux measured by geosynchronous spacecraft. Particle trapping took place mainly as a result of particles becoming non-adiabatic and crossing onto closed field lines. Particle flux in the inner magnetosphere increased dramatically as an interplanetary shock impacted and compressed the magnetosphere near 0600 UT, but long term trapping (hours) did not become widespread until about an hour later, during a further compression of the magnetosphere. Trapped and quasi-trapped particles were lost during the simulation by motion through the magnetopause and by precipitation, primarily the former. This caused the particle population near and within geosynchronous orbit to gradually decrease later on during the latter part of the interval.
机译:我们建模的太阳能能量粒子(SEPs)进入磁层中2001年11月24 - 25日,磁暴和捕获粒子的内部磁气圈。该研究使用的技术很多测试粒子,质子能量大比约100 keV,电和磁字段从全球磁流体动力(磁流体动力)模拟的磁气圈在这风暴。被困人口附近,在同步轨道。模拟一个相当不错的工作预测微分流量测量同步轨道飞船。主要是由于粒子成为非绝热的,穿越到闭域行。作为星际冲击急剧增加附近的磁气圈和压缩的影响0600 UT,但长期捕获(小时)没有普及,直到大约一个小时后,在进一步压缩磁气圈。粒子模拟中丧生的通过磁层和运动沉淀,主要是前者。在附近的粒子数量地球同步轨道以后逐渐减少在后者的一部分区间。

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