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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Oxygen and hydrogen ion abundance in the near-Earth magnetosphere: Statistical results on the response to the geomagnetic and solar wind activity conditions
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Oxygen and hydrogen ion abundance in the near-Earth magnetosphere: Statistical results on the response to the geomagnetic and solar wind activity conditions

机译:氧和氢离子的丰度近地磁气圈:统计结果地磁和太阳风的响应活动条件

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摘要

The composition of ions plays a crucial role for the fundamental plasma properties in the terrestrial magnetosphere. We investigate the oxygen-to-hydrogen ratio in the near-Earth magnetosphere from-10 R_E 274 keV O~+ ion intensities, relative to the corresponding hydrogen intensities; (3) In contrast to ~10 keV ions, the >274 keV O~+ ions show the strongest acceleration during growth phase and not during the expansion phase itself. This suggests a connection between the energy input to the magnetosphere and the effective energization of energetic ions during growth phase; (4) The ratio between quiet and disturbed times for the intensities of ion ionospheric outflow is similar to those observed in the near-Earth magnetosphere at >274 keV. Therefore, the increase of the energetic ion intensity during disturbed time is likely due to the intensification and the effective acceleration of the ionospheric source. In conclusion, the energization process in the near-Earth magnetosphere is mass dependent and it is more effective for the heavier ions.
机译:的复合离子起着至关重要的作用基本的等离子体特性地球磁气圈。在近地oxygen-to-hydrogen比率磁气圈从10 R_E 274 keV O ~ +离子强度,相对于相应的氢强度;> 274 keV O ~ +离子表现出强烈的加速度在成长阶段,而不是在扩张阶段本身。磁气圈和能量输入有效的激发的高能离子增长阶段;离子强度的干扰倍电离层流出所观察到的类似在近地在> 274 keV磁气圈。因此,增加的能量离子强度干扰期间可能是因为加强和有效电离层的加速度的来源。结论,通电过程中近地磁场是质量依赖它更有效的更重的离子。

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