Effect of Vertical Shear in the Zonal Wind on Equatorial Electrojet Sidebands: An Observational Perspective Using Swarm and ICON Data
Authors/Creators
- 1. Indian Institute of Geomagnetism, Navi Mumbai, India.
- 2. High Altitude Observatory, National Centre for Atmospheric Research, Boulder, CO, USA.
- 3. Space Sciences Laboratory, University of California, Berkeley, CA, USA.
- 4. Cooperative Institute for Research in Environmental Sciences, University of Colorado, Boulder, CO, USA.
Description
This data set consists of outputs from the EEJ model by Richmond (1973). The data provided is used in the manuscript titled 'Effect of Vertical Shear in the Zonal Wind on Equatorial Electrojet Sidebands: An Observational Perspective Using Swarm and ICON Data' by J. Sreelakshmi et al.
Abstract of the manuscript:
The wind dynamo in the ionosphere leads to differential motion of ions and electrons, which in turn sets up electric fields and currents. Observations show that daytime lower thermospheric horizontal winds have large vertical gradients. Numerical modelling conducted approximately 50 years ago demonstrated that the zonal wind shears in the ~130-180km altitude range can generate off-equatorial relative minima (dips) in the daytime height-integrated eastward current density, appearing as westward sidebands north and south of the equatorial electrojet (EEJ). This study observationally confirms this connection for the first time by combining Ionospheric CONnection explorer zonal wind profiles and Swarm latitudinal zonal currents. We demonstrate observationally that the magnitude of the EEJ sideband current is proportional to the strength of westward turning winds with altitude in the Pedersen conductivity dominated region. Additional numerical experiments explain the importance of wind shear in different altitude regions in generating the sideband current. This study contributes to the better understanding of the neutral wind effect on local current generation.
Files
Model_data.txt
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Additional details
References
- Richmond, A. D. (1972). Numerical model of the equatorial electrojet. Rep. AFCRL-72-0668, ERP 421, Air Force Cambridge Res. Lab., Hanscorn AFB, Bedford, Mass.
- Richmond, A. D. (1973). Equatorial electrojet-I. Development of a model including winds and instabilities. Journal of Atmospheric and Terrestrial Physics, 35(6), 1083–1103. https://doi.org/10.1016/0021-9169(73)90007-x