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Seasonal variations and northa??south asymmetries in polar wind outflow due to solar illumination

机译:太阳光照导致的极地风流的季节性变化和南北不对称

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The cold ions (energy less than several tens of electronvolts) flowing out from the polar ionosphere, called the polar wind, are an important source of plasma for the magnetosphere. The main source of energy driving the polar wind is solar illumination, which therefore has a large influence on the outflow. Observations have shown that solar illumination creates roughly two distinct regimes where the outflow from a sunlit ionosphere is higher than that from a dark one. The transition between both regimes is at a solar zenith angle larger than 90?°. The rotation of the Earth and its orbit around the Sun causes the magnetic polar cap to move into and out of the sunlight. In this paper we use a simple set-up to study qualitatively the effects of these variations in solar illumination of the polar cap on the ion flux from the whole polar cap. We find that this flux exhibits diurnal and seasonal variations even when combining the flux from both hemispheres. In addition there are asymmetries between the outflows from the Northern Hemisphere and the Southern Hemisphere.
机译:从极地电离层流出的冷离子(能量小于几十电子伏特的能量)称为极风,是磁层的重要等离子体来源。驱动极风的主要能源是太阳光,因此对流出量影响很大。观测结果表明,太阳光照大致会产生两种不同的状态,其中阳光照射电离层的流出量高于暗处。两种状态之间的过渡都在太阳天顶角大于90°。地球及其绕太阳旋转的自转会导致磁极帽移入和移出阳光。在本文中,我们使用一个简单的设置来定性研究极性罩的太阳照度中这些变化对整个极性罩的离子通量的影响。我们发现,即使将两个半球的通量结合起来,该通量仍表现出昼夜和季节变化。另外,北半球和南半球的流出之间存在不对称性。

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