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A Systematic Look at the Temperature Gradient Contribution to the Dayside Magnetopause Current

Authors :
Beedle, Jason M. H.
Gershman, David J.
Uritsky, Vadim M.
Phan, Tai D.
Giles, Barbara L.
Beedle, Jason M. H.
Gershman, David J.
Uritsky, Vadim M.
Phan, Tai D.
Giles, Barbara L.
Publication Year :
2021

Abstract

Magnetopause diamagnetic currents arise from density and temperature driven pressure gradients across the boundary layer. While theoretically recognized, the temperature contributions to the magnetopause current system have not yet been systematically studied. To bridge this gap, we used a database of Magnetospheric Multiscale (MMS) magnetopause crossings to analyze diamagnetic current densities and their contributions across the dayside and flank magnetopause. Our results indicate that the ion temperature gradient component makes up to 37% of the ion diamagnetic current density along the magnetopause and typically opposes the classical Chapman-Ferraro current direction, interfering destructively with the density gradient component, thus lowering the total diamagnetic current density. This effect is most pronounced on the flank magnetopause. The electron diamagnetic current was found to be 5 to 14 times weaker than the ion diamagnetic current on average.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312091644
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1029.2021GL097547