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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Modeling the ionospheric effects of ion and electron precipitation in the cusp
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Modeling the ionospheric effects of ion and electron precipitation in the cusp

机译:模拟尖顶离子和电子沉淀的电离层效应

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The effect of increased ion production due to the precipitation of both ions and electrons in the cusp region has been studied using a computational model of the high-latitude ionosphere. The modeling assumes that the cusp region is subject to fluxes of precipitating electrons which have a Maxwellian energy distribution at a temperature of 50 eV. In addition to the electrons the modeled cusp ionosphere is also subjected to precipitating ions with a Maxwellian energy distribution, at a temperature of 500 eV and a "low energy cutoff" for ions with an energy less than 900 eV. The results reveal both ion and electron precipitation to be important production sources in the cusp region, but at markedly different altitudes. Electron precipitation produces dominant effects at F2 peak altitudes of around 300 km while the ions, at higher energies, are capable of creating a precipitation "F1 ledge" at altitudes of around 150 km. A simulation of the ion dispersion with latitude, known as the "velocity filter effect," reveals that this leads to large enhancements in lower-altitude electron concentration on the equatorward edge of the cusp, the enhancement tailing off sharply in latitude.
机译:已经使用高纬度电离层的计算模型研究了由于离子和电子在尖端区域的沉淀而导致的离子产生增加的影响。该建模假定尖点区域受到沉淀电子的通量的影响,该电子在50 eV的温度下具有麦克斯韦能量分布。除电子外,在温度为500 eV的情况下,已建模的尖峰电离层也将经历具有麦克斯韦能量分布的离子沉淀,对于能量小于900 eV的离子,其“低能量截止”状态。结果表明,离子和电子的沉淀都是尖端区域的重要生产来源,但高度明显不同。电子沉淀在约300 km的F2峰值高度产生主要作用,而离子在较高能量下能够在约150 km的高度产生沉淀“ F1壁架”。对具有纬度的离子弥散的模拟(称为“速度滤波效应”)显示,这会导致尖点赤道边缘的低海拔电子浓度大大增强,增强在纬度上急剧减弱。

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