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20162021
most citedDayside and nightside magnetic field responses at 780 km altitude to dayside reconnection

35 citations · 56 across the 2 of their papers we have counts for

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6 papers · 1 filter

physics.space-ph202121 cited

Observations of Asymmetric Lobe Convection for Weak and Strong Tail Activity

A. Ohma, N. Østgaard, J. P. Reistad +6

In this study we use high-quality convection data from the Electron Drift Instrument on board Cluster to investigate how near-Earth tail activity affects the average convection pat…

physics.space-ph2018

Observations of Asymmetries in Ionospheric Return Flow During Different Levels of Geomagnetic Activity

J. P. Reistad, N. Østgaard, K. M. Laundal +7

It is known that the magnetic field of the Earth's closed magnetosphere can be highly displaced from the quiet-day configuration when interacting with the interplanetary magnetic f…

physics.space-ph201735 cited

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

K. Snekvik, N. Østgaard, P. Tenfjord +4

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 i…

physics.space-ph2016

Birkeland current effects on high-latitude groundmagnetic field perturbations

K. M. Laundal, S. E. Haaland, N. Lehtinen +8

Magnetic perturbations on ground at high latitudes are directly associated only with the divergence-free component of the height-integrated horizontal ionospheric current, $\textbf…

physics.space-ph2016

How the IMF induces a component in the closed magnetosphere and how it leads to asymmetric currents and convection patterns in the two hemispheres

P. Tenfjord, N. Østgaard, K. Snekvik +4

We used the Lyon-Fedder-Mobarry global magnetohydrodynamics model to study the effects of the interplanetary magnetic field (IMF) IMF component on the coupling bet…

physics.space-ph2016

What controls the local time extent of flux transfer events?

S. E. Milan, S. M. Imber, J. A. Carter +2

Flux transfer events (FTEs) are the manifestation of bursty and/or patchy magnetic reconnection at the magnetopause. We compare two sequences of the ionospheric signatures of flux…