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The correlation between electron temperature and density in the topside ionosphere during 2006–2009

机译:电子温度和之间的相关性在上部电离层密度2006–2009

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摘要

Detection of Electro-Magnetic Emissions Transmitted from Earthquake Regions satellite data have been used to investigate the global relationship between electron density (Ne) and electron temperature (Te) in the topside ionosphere (~680 km) from 2006 to 2009. Te and Ne were negatively correlated in most of the low and middle latitude regions at ~10:30 solar local time (LT). In these regions, photoelectron heating of the electrons was balanced by cooling through collisions with the ions. The negative correlation became weaker at midlatitudes, due to the increasing influence of heat conduction. The correlation was negative in most seasons during the daytime except at high latitudes in the northern winter, where a positive correlation occurred. There were wave-like longitudinal structures in Ne and Te around the geomagnetic equator, but they had different patterns in the day and the night. However, no obvious longitudinal variations in the correlation were associated with these structures. A positive correlation occurred near the magnetic equator at ~22:30 LT, which depended on thermal equilibrium between the electrons, ions, and neutrals. A negative correlation occurred at midlatitudes. Around the September equinox, at night around the magnetic equator, the positive correlation had a wider latitudinal range. At midlatitudes, a negative correlation occurred in smaller areas than it did around the March equinox. Around the December solstice the direct nighttime coupling between Ne and Te was weaker than it was around the June solstice. The negative correlation depends on the collisions between the electrons and the ions and the heating source.
机译:检测电磁排放从地震地区卫星传播数据被用来调查全球电子密度(Ne)和之间的关系电子温度(Te)的上部电离层(~ 680公里)从2006年到2009年。大部分的低,是负相关中纬度地区在当地~ 10:30太阳能时间(LT)。加热的电子被冷却的平衡通过与离子的碰撞。相关性成为弱在情理之中,因为热传导的影响力越来越大。在大多数季节期间相关性为负白天除了在高纬度地区北方的冬天,正相关发生。结构和Te地磁在赤道,但他们有不同的模式天深夜。纵向变化的相关性与这些结构有关。在磁赤道附近发生相关~ 22:30 LT,这取决于热平衡之间的电子、离子和中性色。负相关发生在情理之中。在9月equinox,晚上在磁赤道,有正相关的关系更广泛的纬度的范围。负相关发生在较小的区域比在三月春分。冬至直接的耦合Ne和Te之间是弱于夏至。取决于电子之间的碰撞离子和加热源。

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