首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Time-Integral Correlations of Multiple Variables With the Relativistic-Electron Flux at Geosynchronous Orbit: The Strong Roles of Substorm-Injected Electrons and the Ion Plasma Sheet
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Time-Integral Correlations of Multiple Variables With the Relativistic-Electron Flux at Geosynchronous Orbit: The Strong Roles of Substorm-Injected Electrons and the Ion Plasma Sheet

机译:几个变量在地球同步轨道上具有相对论 - 电子通量的时间积分相关性:取代电子和离子等离子体板的强作用

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Time-integral correlations are examined between the geosynchronous relativistic electron flux index Fe1.2 and 31 variables of the solar wind and magnetosphere. An "evolutionary algorithm" is used to maximize correlations. Time integrations (into the past) of the variables are found to be superior to time-lagged variables for maximizing correlations with the radiation belt. Physical arguments are given as to why. Dominant correlations are found for the substorm-injected electron flux at geosynchronous orbit and for the pressure of the ion plasma sheet. Different sets of variables are constructed and correlated with Fe1.2:some sets maximize the correlations, and some sets are based on purely solar wind variables. Examining known physical mechanisms that act on the radiation belt, sets of correlations are constructed (1) using magnetospheric variables that control those physical mechanisms and (2) using the solar wind variables that control those magnetospheric variables. Fe_(1.2)-increasing intervals are correlated separately from Fe_(1.2)-decreasing intervals, and the introduction of autoregression into the time-integral correlations is explored. A great impediment to discerning physical cause and effect from the correlations is the fact that all solar wind variables are intercorrelated and carry much of the same information about the time sequence of the solar wind that drives the time sequence of the magnetosphere.
机译:在太阳风和磁层的地球同步相对论电子磁通指数Fe1.2和31变量之间检查了时间积分相关性。 “进化算法”用于最大化相关性。发现变量的时间集成(进入过去)优于时间滞后变量,以便最大化与辐射带的相关性。物理论点是为什么的。发现了在地球同步轨道上的取代电子磁通和离子等离子体片的压力的主导相关性。不同的变量组成和与FE1.2相关联:有些集合最大化相关性,有些集合基于纯粹的太阳风变量。检查在放射带上采用的已知物理机制,使用控制这些物理机制的磁体变量和(2)使用控制那些磁散变量的太阳能变量来构建(1)。 FE_(1.2) - 从FE_(1.2)分开相关的间隔,探讨了宣传归档进入时间积分相关性的。从相关性辨别物理原因和效果的巨大障碍是,所有太阳风变量都是互连的并且​​携带关于驱动磁层的时间序列的太阳风的时间序列的大部分相同的信息。

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