Modeling the influence of magnetospheric heat fluxes on the electron temperature in the subauroral ionosphere

Автор: Gololobov A.Yu., Golikov I.A., Varlamov I.I.

Журнал: Солнечно-земная физика @solnechno-zemnaya-fizika

Статья в выпуске: 2 т.3, 2017 года.

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We present results of modeling of the electron temperature distribution in the F region of the subauroral ionosphere for different helio-geomagnetic conditions with consideration for magnetospheric heat fluxes. It is shown that under quiet geomagnetic conditions during a winter period in the dawn and dusk sectors “hot” zones with a higher electron temperature are formed, and under disturbed geomagnetic conditions an annular “hot” region is formed in a time interval 04-06 UT as a result of heat inflow from Earth’s magnetosphere along magnetic field lines. The analysis of the DE-2 satellite data demonstrates that such zones can be formed during geomagnetic disturbances.

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Область f2, subauroral ionosphere, electron temperature, heat flux, three-dimensional model, ring current, f2 region, elevated electron temperature regions, longitudinal features

Короткий адрес: https://sciup.org/142103644

IDR: 142103644   |   DOI: 10.12737/22595

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