Wilkinson, P. J.; Nielsen, E.; Lühr, H.: Ionospheric conductances: Associations between ionospheric E region electric field and ground magnetometer variations. Journal Geophysical Research 91, p. 5839 (1986)
Baumjohann, W.; Gustafsson, G.; Nielsen, E.; Ranta, H.; Evans, D. S.: Latitude-integrated joule and particle heating rates during the energy budget campaign. Journal of Atmospheric and Terrestrial Physics 47, p. 27 (1985)
Burrage, M. D.; Waldock, J. A.; Jones, T. B.; Nielsen, E.: Joint STARE and SABRE radar auroral observations of the high-latitude ionospheric convection pattern. Nature 316, p. 6024 (1985)
Dickison, P. H. G.; Grabowski, R.; Hanuise, C.; Mackinnon, D. J.; Nielsen, E.; Thrane, E. V.; Villain, J. P.; Wolf, H.; Andreassen, O.: Stimultaneous observations of E-region irregularities by ground-based and rocket-borne techniques. Journal of Atmospheric and Terrestrial Physics 47, p. 265 (1985)
Djuth, F. T.; Rost, R. J.; Noble, S. T.; Gordon, W. E.; Stubbe, P.; Kopka, H.; Nielsen, E.; Bostrom, R.; Derblom, H.; Hedberg, A.et al.; Thide, B.: Observations of E-region irregularities generated at auroral latitudes by a higher-power radio wave. Journal Geophysical Research 90, p. 12293 (1985)
Goertz, C. K.; Nielsen, E.; Korth, A.; Glassmeier, K. H.; Haldoupis, C.; Hoeg, P.; Hayward, D.: Observations of a possible ground signature of flux-transfer events. Journal Geophysical Research 90, p. 4069 (1985)
Grabowski, R.; Hanuise, C.; Nielsen, E.; Villain, J. P.; Wolf, H.: Stimultaneous measurements of the ionospheric electric field by probes and radar methods. Journal of Atmospheric and Terrestrial Physics 47, p. 41 (1985)
Misra, K. D.; Nielsen, E.; Lühr, L.: STARE and SABRE observations of a Pc5 pulsation with large azimuthal wave number during storm period. Journal Geophysical Research 90, p. 10923 (1985)
Nielsen, E.; Schlegel, K.: Coherent radar Doppler measurements and their relationship to the ionospheric electron drift velocity. Journal Geophysical Research 90, pp. 3498 - 3504 (1985)
Reinleitner, L. A.; Nielsen, E.: Self-consistent analysis öof electron drift velocity measurements with the STARE/SABRE system. Journal Geophysical Research 90, p. 8477 (1985)
Schlegel, K.; Nielsen, E.: Foreword to the contributions of the 11th Lindau MPAE Workshop ``Irregularities in the high-latitude ionosphere''. Radio Science 20, p. 675 (1985)
Waldock, J. A.; Jones, T. B.; Nielsen, E.: Statistical studies of 1 m plasma irregularities and convection in the auroral E-region using SABRE. Radio Science 20, p. 709 (1985)
de la Beaujardiere, O.; Wickwar, V. B.; Baron, M. J.; Holt, J.; Wand, R. M.; Oliver, W. L.; Bauer, P.; Blanc, M.; Senior, C.; Alcayde, D.et al.; Caudal, G.; Foster, J.; Nielsen, E.; Heelis, R.: MITHRAS: A brief description. Radio Science 19, p. 665 (1984)
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".