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Dayside and nightside magnetic field responses at 780 km altitude to dayside reconnection

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posted on 2017-03-09, 11:10 authored by K Snekvik, N Østgaard, P Tenfjord, JP Reistad, KM Laundal, SE Milan, SE Haaland
During southward interplanetary magnetic field, dayside reconnection will drive the Dungey cycle in the magnetosphere, which is manifested as a two-cell convection pattern in the ionosphere. We address the response of the ionospheric convection to changes in the dayside reconnection rate by examining magnetic field perturbations at 780 km altitude. The Active Magnetosphere and Planetary Electrodynamics Response Experiment data products derived from the Iridium constellation provide global maps of the magnetic field perturbations. Cluster data just upstream of the Earth's bow shock have been used to estimate the dayside reconnection rate. By using a statistical model where the magnetic field can respond on several time scales, we confirm previous reports of an almost immediate response both near noon and near midnight combined with a 10-20 min reconfiguration time of the two-cell convection pattern. The response of the ionospheric convection has been associated with the expansion of the polar cap boundary in the Cowley-Lockwood paradigm. In the original formulation of this paradigm the expansion spreads from noon to midnight in 15-20 min. However, also an immediate global response has been shown to be consistent with the paradigm when the previous dayside reconnection history is considered. In this paper we present a new explanation for how the immediate response can be accommodated in the Cowley-Lockwood paradigm. The new explanation is based on how MHD waves propagate in the magnetospheric lobes when newly reconnected open flux tubes are added to the lobes, and the magnetopause flaring angle increases.

Funding

The authors are thankful for inspirational discussions with J.W. Gjerloev and R. Strangeway. This study was funded by the Research Council of Norway under contracts 216872/F50 and 223252/F50 (CoE). We thank the AMPERE team and the AMPERE Science Center for providing the Iridium-derived data products. The AMPERE data are available at ampere.jhuapl.edu. We acknowledge the Cluster FGM PI Chris Carr, the Cluster CIS PI Iannis Dandouras, and ESA Cluster Science Archive for making the Cluster data available.

History

Citation

Journal of Geophysical Research: Space Physics, 2017,122

Author affiliation

/Organisation/COLLEGE OF SCIENCE AND ENGINEERING/Department of Physics and Astronomy

Version

  • VoR (Version of Record)

Published in

Journal of Geophysical Research: Space Physics

Publisher

American Geophysical Union (AGU), Wiley

issn

2169-9380

eissn

2169-9402

Acceptance date

2017-01-14

Copyright date

2017

Available date

2017-03-09

Publisher version

http://onlinelibrary.wiley.com/doi/10.1002/2016JA023177/abstract

Language

en

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