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Distribution of energetic oxygen and hydrogen in the near-Earth plasma sheet

机译:精力充沛的氧和氢的分布近地等离子表

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摘要

The spatial distributions of different ion species are useful indicators for plasma sheet dynamics. In this statistical study based on 7 years of Cluster observations, we establish the spatial distributions of oxygen ions and protons at energies from 274 to 955 keV, depending on geomagnetic and solar wind (SW) conditions. Compared with protons, the distribution of energetic oxygen has stronger dawn-dusk asymmetry in response to changes in the geomagnetic activity. When the interplanetary magnetic field (IMF) is directed southward, the oxygen ions show significant acceleration in the tail plasma sheet. Changes in the SW dynamic pressure (Pdyn) affect the oxygen and proton intensities in the same way. The energetic protons show significant intensity increases at the near-Earth duskside during disturbed geomagnetic conditions, enhanced SW Pdyn, and southward IMF, implying there location of effective inductive acceleration mechanisms and a strong duskward drift due to the increase of the magnetic field gradient in the near-Earth tail. Higher losses of energetic ions are observed in the dayside plasma sheet under disturbed geomagnetic conditions and enhanced SW Pdyn. These observations are in agreement with theoretical models.
机译:不同离子的空间分布的物种等离子体是有用的指标表动态。在这个基于7年的统计研究集群的观察,我们建立的空间氧离子和质子的分布从274年到955 keV能量,这取决于地磁和太阳风(SW)条件。与质子的分布精力充沛的氧具有较强dawn-dusk不对称针对地磁的变化活动。(IMF)直接向南,氧离子尾巴显著加速等离子体表。影响氧气和质子的强度同样的方式。在近地duskside强度增加在地磁干扰条件下,增强SW Pdyn和国际货币基金组织向南,这意味着有效的位置感应加速度机制和强大的duskward漂移由于增加的磁场梯度近地尾巴。中观察到的光面等离子板下吗地磁干扰条件和增强西南Pdyn。理论模型。

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