Fränz, M.; Dubinin, E.; Andrews, D.; Barabash, S.; Nilsson, H.; Fedorov, A.: Cold ion escape from the Martian ionosphere. Planetary and Space Science 119, pp. 92 - 102 (2015)
Chai, L.; Fraenz, M.; Wan, W.; Rong, Z.; Zhang, L.; Wie, Y.; Dubinin, E.; Zhong, J.; Han, X.; Barabash, S.: IMF control of the location of Venusian bow shock: The effect of the magnitude of IMF component tangential to the bow shock surface. Journal Geophysical Research 119, pp. 9464 - 9475 (2014)
Dubinin, E.; Fraenz, M.; Zhang, T. L.; Woch, J.; Wei, Y.: Magnetic fields in the Venus ionosphere: Dependence on the IMF direction‐ Venus Express observations. Journal Geophysical Research 119, pp. 7587 - 7600 (2014)
Dubinin, E.; Fraenz, M.; Zhang, T. L.; Woch, J.; Wei, Y.: Magnetic fields in the Mars ionosphere of noncrustal origin: Magnetization features. Geophysical Research Letters 41, pp. 6329 - 6334 (2014)
Han, X.; Fraenz, M.; Dubinin, E.; Wei, Y.; Andrews, D. J.; Wan, W.; He, M.; Rong, Z. J.; Chai, L.; Zhong, J.et al.; Li, K.; Barabash, S.: Discrepancy between ionopause and photoelectron boundary determined from Mars Express measurements. Geophysical Research Letters 41, pp. 8221 - 8227 (2014)
Morgan, D.; Diéval, C.; Gurnett, D. A.; Duru, F.; Dubinin, E.; Fränz, M.; Andrews, D.; Opgenoorth, J.; Ulusen, D.; Mitrofanov, I.et al.; Plaut, J. J.: Effects of a strong ICME on the Martian ionosphere as detected by Mars Express and Mars Odyssey. Journal Geophysical Research 119, pp. 5891 - 5908 (2014)
Andrews, D.; Opgenoorth, H.; Edberg, N.; André, M.; Fränz, M.; Dubinin, E.; Duru, F.; Morgan, D.; O., W.: Determination of local plasma densities with the MARSIS radar: Asymmetries in the high-altitude Martian ionosphere. Journal Geophysical Research 118, pp. 6228 - 6242 (2013)
Dubinin, E.; Fraenz, M.; Woch, J.; Zhang, T.-L.; Wei, Y.; Fedorov, A.; Barabash, S.; R., L.: Toroidal and poloidal magnetic fields at Venus. Venus Express observations. Planetary and Space Science 87, pp. 19 - 29 (2013)
Dubinin, E.; Fraenz, M.; Zhang, T.-L.; Woch, J.; Wei, Y.; Fedorov, A.; Barabash, S.; R., L.: Plasma in the Near Venus Tail - Venus Express Observations. Journal Geophysical Research 118, pp. 7624 - 7634 (2013)
Lundin, R.; Barabash, S.; Holmstrom, M.; Nilsson, H.; Futaana, Y.; Ramstad, R.; Yamauchi, M.; Dubinin, E.; Fraenz, M.: Solar cycle effects on the ion escape from Mars. Geophysical Research Letters 40 (23), pp. 6028 - 6032 (2013)
Wei, Y.; Fränz, M.; Dubinin, E.; He, M.; Ren, Z.; Zhao, B.; Liu, J.; Wan, W.; Yumoto, K.; Watari, S.et al.; Alex, S.: Can a nightside geomagnetic Delta H observed at the equator manifest a penetration electric field? Journal Geophysical Research 118 (6), pp. 3557 - 3567 (2013)
Dubinin, E.; Fraenz, M.; Woch, J.; Modolo, R.; Chanteur, G.; Duru, F.; Gurnett, D. A.; Barabas, S.; Lundin, R.: Upper ionosphere of Mars is not axially symmetrical. Earth, Planets and Space 64, pp. 113 - 120 (2012)
Dubinin, E.; Fraenz, M.; Woch, J.; Zhang, T.-L.; Wei, J.; Barabash, S.; R., L.: Bursty escape fluxes in plasma sheets of Mars and Venus. Geophysical Research Letters 39, L01104 (2012)
Modolo, R.; Chanteur, G.; Dubinin, E.: Dynamic Martian magnetosphere: Transient twist induced by a rotation of the IMF. Geophysical Research Letters 39, L01106 (2012)
Richer, E.; Chanteur, G. M.; Modolo, R.; Dubinin, E.: Reflection of solar wind protons on the Martian bow shock: Investigations by means of 3-dimensional simulations. Geophysical Research Letters 39, L17101 (2012)
Wei, Y.; Fraenz, M.; Dubinin, E.; Coates, A. J.; Zhang, T. L.; Wan, W.; Feng, L.; Angsmann, A.; Opitz, A.; Woch, J.et al.; Barabash, S.; Lundin, R.: A teardrop-shaped ionosphere at Venus in tenuous solar wind. Planetary and Space Science 73, pp. 254 - 261 (2012)
Wei, Y.; Fraenz, M.; Dubinin, E.; Woch, J.; Lühr, H.; Wan, W.; Zong, Q.-G.; Zhang, T. L.; Pu, Z. Y.; Fu, S. Y.et al.; Barabash, S.; Lundin, R.; Dandouras, I.: Enhanced atmospheric oxygen outflow on Earth and Mars driven by a corotating interaction region. Journal Geophysical Research 117, A03208 (2012)
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".