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Fe/O ratio behavior as an indicator of solar plasma state at different solar activity manifestations and in periods of their absence

机译:Fe / O比行为在不同的太阳活动表现形式和缺乏时表现为太阳等离子体状态的指标

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We report the results of the investigation into plasma physical characteristics at various solar activity manifestations and in periods of their absence. These results have been obtained from quantitative estimates of the relative abundance of Fe/O ions in different energy ranges. Maximum values of the Fe/O ratio is shown to correspond to particle fluxes from impulsive flares for ions with energies 30 MeV), the Fe/O increase is due to the decisive influence of galactic cosmic rays on the composition of impurity elements in the solar wind under solar minimum conditions. The relative content of heavy elements in galactic cosmic rays 30–500 MeV is similar to values in fluxes from gradual flares during high solar activity.During solar minimum without sunspots, the behavior of Fe/O for different ion energy ranges in plasma flows from coronal holes (CH) and in the solar wind exhibits only minor deviations. At the same time, plasma flows associated with the disturbed frontal CH region can be sources of moderate geomagnetic storms.
机译:我们报告了在各种太阳活动表现和缺乏期间的等离子体物理特性的调查结果。这些结果是从不同能量范围内Fe / O离子的相对丰度的定量估计获得的。 Fe / O比的最大值显示为与能量为30 MeV / n的离子的脉冲耀斑产生的通量相对应,Fe / O的增加归因于银河系宇宙射线对金属中杂质元素组成的决定性影响。太阳最低条件下的太阳风。 30-500 MeV / n的银河宇宙射线中重元素的相对含量与太阳活动活跃期间渐进耀斑产生的通量值相似。在没有太阳黑子的太阳最低辐射期间,等离子流中不同离子能量范围的Fe / O行为来自日冕孔(CH)和太阳风中的变化很小。同时,与受扰的正面CH区域相关的等离子体流可能是中等地磁风暴的来源。

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