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Study of the influence of magnetic fluctuations and solar plasma density on the solar wind-magnetosphere coupling

机译:磁涨落和太阳等离子体密度对太阳风磁层耦合影响的研究

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摘要

We have identified and selected 212 geomagnetic disturbances of varying level of geomagnetic activity, based on the changes in Dst index. The selected events are divided into six different groups according to different geomagnetic activity levels. We study the average behavior of solar plasma flow speed (V), density (N), dynamic pressure (P), magnetic field (B), its north-south component (Bz) and variance (σ _B) and dusk-ward electric field (Ey), and their role in solar wind-magnetosphere coupling. For this purpose we adopted the method of superposed epoch (SPE) analysis. Hourly solar wind plasma and field parameters (V, B, Bz, σ _B, N, P, Ey) together with Dst index are analyzed using SPE analysis with respect to the start of the changes in geomagnetic activity, separately for all six groups of increasing level of activity. In particular, we study the influence of the enhancements in solar plasma density/dynamic pressure and field fluctuations on the solar wind-magnetosphere coupling, during southward field orientation within the responsible interplanetary structures. In addition to studying the average properties with the use of SPE analysis, we have also considered individual events with different level of geomagnetic activity (Dst) and studied its relationship to interplanetary field parameters. We observed that the enhancement in plasma density/pressure and fluctuations in field starting several hours before the storm/activity onset, might play a role in enhancing the solar wind-magnetosphere coupling efficiency.
机译:根据Dst指数的变化,我们已经确定并选择了212个具有不同水平的地磁活动的地磁干扰。根据不同的地磁活动水平,将选定的事件分为六个不同的组。我们研究了太阳等离子体流速(V),密度(N),动压(P),磁场(B),其南北分量(Bz)和方差(σ_B)和黄昏向电的平均行为场(Ey)及其在太阳风-磁层耦合中的作用。为此,我们采用了叠加时期(SPE)分析的方法。针对地磁活动变化的开始,使用SPE分析法分别对所有六个组的太阳风等离子体和场小时参数(V,B,Bz,σ_B,N,P,Ey)以及Dst指数进行了分析。活动水平不断提高。特别是,我们研究了负责任行星际结构内向南磁场定向过程中,太阳等离子体密度/动压力和场波动的增强对太阳风-磁层耦合的影响。除了使用SPE分析研究平均性质外,我们还考虑了具有不同水平地磁活动(Dst)的单个事件,并研究了其与行星际场参数的关系。我们观察到,在风暴/活动开始前几个小时,血浆密度/压力的增加和场的起伏可能在提高太阳风-磁层耦合效率中发挥了作用。

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