4.4 Article

Responses of Mesosphere and Lower Thermosphere Temperature to the Geomagnetic Storm on 7-8 September 2017

期刊

UNIVERSE
卷 8, 期 2, 页码 -

出版社

MDPI
DOI: 10.3390/universe8020096

关键词

temperature; geomagnetic storm; TIMEGCM; the mesosphere and lower thermosphere (MLT)

资金

  1. National Natural Science Foundation of China [42030203, 42074183, 42004132]

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The study investigates the variations of neutral temperature in the mesosphere and lower thermosphere region during the intense geomagnetic storm in September 2017 using observations and simulations. Observations show significant temperature changes during the storm, with hemispheric asymmetry. The simulations generally agree with observations but show differences in temperature changes at different latitudes.
The variations of neutral temperature in the mesosphere and lower thermosphere (MLT) region, during the 7-8 September 2017 intense geomagnetic storm, are studied using observations by the Sounding of the Atmosphere using Broadband Emission Radiometry (SABER) instrument onboard the Thermosphere Ionosphere Mesosphere Energetics and Dynamics (TIMED) satellite. They are also studied using simulations by the Thermosphere-Ionosphere-Mesosphere-Electrodynamics General Circulation Model (TIMEGCM). The neutral temperature data cover the altitudes from 80 km to 110 km between 83 degrees N and 52 degrees S latitude, obtained from both SABER observations and model simulations. The SABER observations reveal that temperature increases (the maximum increase is larger than 35 K at ~108 km) and decreases (the maximum decrease is larger than 20 K at ~105 km) during the geomagnetic storm. The storm effects penetrate down to ~80 km. In observations, temperature variations corresponding to the storm show hemispheric asymmetry. That is, the variations of temperature are more prominent in the northern hemisphere than in the southern hemisphere. Conversely, the TIMEGCM outputs agree with the observations in general but overestimate the temperature increases and underestimate the temperature decreases at high and middle latitudes. Meanwhile, the simulations show stronger temperature decreases and weaker temperature increases than observations at low latitudes. After analyzing the temperature variations, we suggest that vertical winds may play an important role in inducing these significant variations of temperature in the MLT region.

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