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Extreme Enhancements of Electron Temperature in Low Latitude Topside Ionosphere During the October 2016 Storm

机译:极端的增强电子温度中低纬度上部电离层2016年10月风暴

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摘要

We use the in-situ observations of DMSP and SWARM satellites to report the changes of the topside ionospheric electron temperature during the October 2016 storm. Electron temperature in the afternoon sector dramatically increases in low latitudes in the recovery phase of the storm. Furthermore, the temperature enhancements have an obvious dependence on longitude and are mainly centralized around 100°–150°E in different satellite observations. The temperature enhancements attain more than 2,000 K at 840 km and 1,500 K at 450 km around the magnetic equator. The decrease in the electron-ion collision cooling rate, resulting from the lessened topside electron density, could not fully explain the temperature enhancement. At the same time, the electron densities in crests of the equatorial ionization anomaly are suppressed drastically at 100°–150°E, which cause a less heat conduction effect from the equatorial topside ionosphere to low altitudes via magnetic field lines and heat the topside ionospheric electron temperature. Further analysis indicates that dayside westward disturbance dynamo electric field presents a significant longitude structure and is a primary driver for the topside ionospheric temperature enhancement during the storm.
机译:我们利用DMSP的原位观测和群卫星报告在甲板上的变化在电离层电子温度2016年10月风暴。下午部门大幅增加在低暴风雨的纬度在复苏阶段。此外,有一个温度增强明显的经度和主要的依赖集中在100°-150°E不同卫星观测。增强达到超过2000 K 840公里磁性和1500 K 450公里赤道。冷却速度碰撞,造成的减少上部电子密度,不能完全解释温度提高。同时,电子密度的波峰赤道电离异常压抑大大在100°-150°E,这导致更少从赤道热传导效应通过磁上部电离层低海拔地区干舷电离层电场线和热电子温度。,向西的光面发电机电气干扰经度字段提供了一个重要的结构上部的主要动力增强在电离层温度风暴。

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