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首页> 外文期刊>Geophysical Research Letters >Perpendicular Current Reduction Caused by Cold Ions of Ionospheric Origin in Magnetic Reconnection at the Magnetopause: Particle-in-Cell Simulations and Spacecraft Observations
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Perpendicular Current Reduction Caused by Cold Ions of Ionospheric Origin in Magnetic Reconnection at the Magnetopause: Particle-in-Cell Simulations and Spacecraft Observations

机译:磁性重组磁重组冷离子引起的垂直电流减少:粒子间模拟和航天器观测

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摘要

Cold ions of ionospheric origin are present throughout the Earth's magnetosphere, including the dayside magnetopause, where they modify the properties of magnetic reconnection, a major coupling mechanism at work between the magnetosheath and the magnetosphere. We present Magnetospheric MultiScale (MMS) spacecraft observations of the reconnecting magnetopause with different amounts of cold ions and show that their presence reduces the Hall term in the Ohm's law. Then, we compare two particle-in-cell simulations, with and without cold ions on the magnetospheric side. The cold ions remain magnetized inside the magnetospheric separatrix region, leading to the reduction of the perpendicular currents associated with the Hall effect. Moreover, this reduction is proportional to the relative number density of cold ions. And finally, the Hall electric field peak is reduced along the magnetospheric separatrix owing to cold ions. This should have an effect on energy conversion by reconnection from electromagnetic fields to kinetic energy of the particles.
机译:在整个地球磁层中存在电离层的冷离子,包括天磁页,在那里它们改变磁性重新连接的性质,磁性磁圈和磁层之间的工作中的主要耦合机构。我们呈现磁体多尺度(MMS)航天器观测的重新连接磁档,具有不同的冷离子,并表明他们的存在减少了欧姆法律中的霍尔术语。然后,我们比较两个粒子内模拟,在磁磁侧的冷离子上没有冷离子。冷离子在磁体分离区域内部保持磁化,导致与霍尔效应相关的垂直电流的降低。此外,这种减少与冷离子的相对数密度成比例。最后,由于冷离子,霍尔电场峰值沿着磁体分离器减少。这应该对通过从电磁场重新连接到颗粒的动能的能量转换产生影响。

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