Grimmich, N.; Plaschke, F.; Grison, B.; Prencipe, F.; Escoubet, C. P.; Owain Archer, M.; Dragos Constantinescu, O.; Haaland, S.; Nakamura, R.; Sibeck, D. G.et al.; Darrouzet, F.; Hayosh, M.; Maggiolo, R.: The Cluster Spacecrafts' View Of The Motion Of The High-Latitude Magnetopause. Annales Geophysicae 42, pp. 371 - 394 (2024)
Grimmich, N.; Plaschke, F.; Grison, B.; Prencipe, F.; Escoubet, C. P.; Owain Archer, M.; Dragos Constantinescu, O.; Haaland, S.; Nakamura, R.; Sibeck, D. G.et al.; Darrouzet, F.; Hayosh, M.; Maggiolo, R.: The Cluster Spacecrafts' View Of The Motion Of The High-Latitude Magnetopause. Annales Geophysicae 42, pp. 371 - 394 (2024)
Grimmich, N.; Plaschke, F.; Grison, B.; Prencipe, F.; Escoubet, C. P.; Owain Archer, M.; Dragos Constantinescu, O.; Haaland, S.; Nakamura, R.; Sibeck, D. G.et al.; Darrouzet, F.; Hayosh, M.; Maggiolo, R.: The Cluster Spacecrafts' View Of The Motion Of The High-Latitude Magnetopause. Annales Geophysicae 42, pp. 371 - 394 (2024)
Madelaire, M.; Laundal, K.; Reistad, J.; Hatch, S.; Ohma, A.; Haaland, S.: Geomagnetic Response to Rapid Increases in Solar Wind Dynamic Pressure: Event Detection and Large Scale Response. FRONTIERS IN ASTRONOMY AND SPACE SCIENCES (2022)
Billett, D.D.; Perry, G.W.; Clausen, L.B.N.; Archer, W.E.; McWilliams, K.A.; Haaland, S.; Reistad, J.P.; Burchill, J.K.; Patrick, M.R.; Humberset, B.K.et al.; Anderson, B.J.: The Relationship Between Large Scale Thermospheric Density Enhancements and the Spatial Distribution of Poynting Flux. Journal of Geophysical Research: Space Physics 126 (5), e2021JA029205 (2021)
Fuselier, S. A.; Haaland, S.; Tenfjord, P.; Paschmann, G.; Toledo‐Redondo, S.; Malaspina, D.; Kim, M. J.; Trattner, K. J.; Petrinec, S. M.; Giles, B. L.et al.; Goldstein, J.; Burch, J. L.; Strangeway, R. J.: High‐Density Magnetospheric He+ at the Dayside Magnetopause and Its Effect on Magnetic Reconnection. Journal of Geophysical Research: Space Physics 126 (1), 2020JA028722 (2021)
Haaland, S.; Daly, P. W.; Vilenius, E.: Heavy Metal and Rock in Space: Cluster RAPID Observations of Fe and Si. Journal of Geophysical Research: Space Physics 126 (3), e2020JA028852 (2021)
Li, K.; Haaland, S.; Wei, Y.: A New Concept to Measure the Ambipolar Electric Field Driving Ionospheric Outflow. Journal of Geophysical Research: Space Physics 126 (2), e2020JA028409 (2021)
Paschmann, G.; Quinn, J. M.; Torbert, R. B.; McIlwain, C. E.; Vaith, H.; Haaland, S.; Matsui, H.; Kletzing, C. A.; Baumjohann, W.; Haerendel, G.: Results of the Electron Drift Instrument on Cluster. Journal of Geophysical Research: Space Physics 126 (6), e2021JA029313 (2021)
Reistad, J.P.; Laundal, K.M.; Østgaard, N.; Ohma, A.; Burrell, A.G.; Hatch, S.M.; Haaland, S.; Thomas, E.G.: Quantifying the Lobe Reconnection Rate During Dominant IMF By Periods and Different Dipole Tilt Orientations. Journal of Geophysical Research: Space Physics 126 (11), e2021JA029742 (2021)
Toledo-Redondo, S.; André, M.; Aunai, N.; Chappell, C. R.; Dargent, J.; Fuselier, S. A.; Glocer, A.; Graham, D. B.; Haaland, S.; Hesse, M.et al.; Kistler, L. M.; Lavraud, B.; Li, W.; Moore, T. E.; Tenfjord, P.; Vines, S. K.: Impacts of Ionospheric Ions on Magnetic Reconnection and Earth's Magnetosphere Dynamics. Reviews of Geophysics 59 (3), e2020RG000707 (2021)
Case, N.A.; Grocott, A.; Fear, R.C.; Haaland, S.; Lane, J.H.: Convection in the Magnetosphere-Ionosphere System: A Multimission Survey of Its Response to IMF By Reversals. Journal of Geophysical Research: Space Physics 125 (10), e2019JA027541 (2020)
Escoubet, C. P.; Hwang, K.-J.; Toledo-Redondo, S.; Turc, L.; Haaland, S.; Aunai, N.; Dargent, J.; Eastwood, J. P.; Fear, R. C.; Fu, H.et al.; Genestreti, K. J.; Graham, D. B.; Khotyaintsev, Y. V.; Lapenta, G.; Lavraud, B.; Norgren, C.; Sibeck, D. G.; Varsani, A.; Berchem, J.; Dimmock, A. P.; Paschmann, G.; Dunlop, M.; Bogdanova, Y. V.; Roberts, O.; Laakso, H.; Masson, A.; Taylor, M. G. G. T.; Kajdič, P.; Carr, C.; Dandouras, I.; Fazakerley, A.; Nakamura, R.; Burch, J. L.; Giles, B. L.; Pollock, C.; Russell, C. T.; Torbert, R. B.: Cluster and MMS Simultaneous Observations of Magnetosheath High Speed Jets and Their Impact on the Magnetopause. Frontiers in Astronomy and Space Sciences 6, 78 (2020)
How does our star heat its outer atmosphere, the solar corona, to unimaginable temperatures of up to 10 million degrees Celsius? With unprecedented observational data from ESA's Solar Orbiter spacecraft and powerful computer simulations, ERC starting grant awardee Pradeep Chitta intends to bring new momentum to the search for the coronal heating mechanism.
The research group “Solar Lower Atmosphere and Magnetism” (SLAM) studies the conditions and dynamic processes in the atmospheric layer between the solar surface (photosphere) and the overlying chromosphere, an approximately 2000 km thick gas layer.
The main research fields of the department "Sun and Heliosphere" are covered by the research groups "Solar and Stellar Coronae", "Solar Lower Atmosphere and Magnetism", "Solar and Stellar Magnetohydrodynamics" and "Solar Variability and Climate".