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Use of the Physically Based Modeling to Choose an Adequate Method for Determining the Plasmapause Position

机译:使用物理基于基于的建模来选择用于确定离子率位置的适当方法

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From the data on the cold plasma measurements onboard the INTERBALL-1 spacecraft (1995-2000), the plasmapause positions determined from the most frequently used formal criterion-a fivefold or higher decrease in plasma density with an increase in the L-shell by 0.5-and visually from the measured energy spectra of thermal protons have been analyzed and compared. The difference in the results of the both empiric techniques makes it possible to estimate the thickness of the boundary layer of the plasmasphere. The model of the Earth's plasmasphere developed earlier by the authors (Verigin et al., 2012; Kotova et al., 2015) based on the theoretical expressions makes it possible to reconstruct the plasma distribution throughout the plasmasphere from the measurements along a single pass of the orbiter and to find the plasmapause position defined as the last closed stream line. Comparison of the plasmapause position obtained with empirical techniques to the position of this boundary calculated with physically based models of the plasma distribution in the plasmasphere has shown that the modeled position of the plasmapause approximately coincides with that determined from the formal criterion described above.
机译:从挡板上的冷等离子体测量的数据(1995-2000),从最常使用的正式标准确定的差值位置 - 血浆密度的五倍或更高的降低,随着L-壳的增加0.5 - 从视觉上从测量的热质子的能谱进行分析并进行比较。两种经验技术的结果的差异使得可以估计PLASMASphere的边界层的厚度。基于理论表达的基于理论表达,地球的Plasmasphere的模型(Verigin等,2015),可以在沿着单一的通过轨道器并找到定义为最后一个闭合流线的离子假释位置。用经验技术获得的比较与PLASMASphere中的等离子体分布的物理基础的模型计算的该边界的位置已经表明,离子率的建模位置与从上述正式标准确定的那一致。

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