Numerical simulation of the 6 day wave effects on the ionosphere: Dynamo modulation

The Thermosphere-Ionosphere-Mesosphere Electrodynamics General Circulation Model (TIME-GCM) is used to theoretically study the 6 day wave effects on the ionosphere. By introducing a 6 day perturbation with zonal wave number 1 at the model lower boundary, the TIME-GCM reasonably reproduces the 6 day wave in temperature and horizontal winds in the mesosphere and lower thermosphere region during the vernal equinox. The E region wind dynamo exhibits a prominent 6 day oscillation that is directly modulated by the 6 day wave. Meanwhile, significant local time variability (diurnal and semidiurnal) is also seen in wind dynamo as a result of altered tides due to the nonlinear interaction between the 6 day wave and migrating tides. More importantly, the perturbations in the E region neutral winds (both the 6 day oscillation and tidal-induced short-term variability) modulate the polarization electric fields, thus leading to the perturbations in vertical ion drifts and ionospheric F-2 region peak electron density (NmF2). Our modeling work shows that the 6 day wave couples with the ionosphere via both the direct neutral wind modulation and the interaction with atmospheric tides.

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Copyright 2016 American Geophysical Union.


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Author Gan, Quan
Wang, Wenbing
Yue, Jia
Liu, Hanli
Chang, Loren C.
Zhang, Shaodong
Burns, Alan
Du, Jian
Publisher UCAR/NCAR - Library
Publication Date 2016-10-01T00:00:00
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Topic Category geoscientificInformation
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Metadata Date 2023-08-18T19:09:53.806592
Metadata Record Identifier edu.ucar.opensky::articles:19337
Metadata Language eng; USA
Suggested Citation Gan, Quan, Wang, Wenbing, Yue, Jia, Liu, Hanli, Chang, Loren C., Zhang, Shaodong, Burns, Alan, Du, Jian. (2016). Numerical simulation of the 6 day wave effects on the ionosphere: Dynamo modulation. UCAR/NCAR - Library. http://n2t.net/ark:/85065/d7n29zq4. Accessed 29 June 2025.

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