Fränz, M.; Krupp, N.; Roussos, E.; Wang, X.-D.: Plasma Energization in the Jovian System. European Planetary Science Congress EPSC, Cascais, Portugal (2014)
Krupp, N.; Roussos, E.; Fränz, M.; Palmaerts, B.; Bagenal, F.; Wilson, R.; Paranicas, C.: Global Flow Patterns in the Jovian Magnetosphere: Galileo/EPD and Galileo/PLS measurements. European Planetary Science Congress EPSC, Cascais, Portugal (2014)
Wei, Y.; Fränz, M.; Dubinin, E.; Wan, W.; Jarvinen, R.; Zhang, T.-L.; Barabash, S.; Lundin, R.: Ablation of Venusian oxygen ions by unshocked solar wind. European Geosciences Union General Assembly 2014, Vienna, Austria (2014)
De Oliveira, I.; Echer, E.; Franco, A.; Fränz, M.: Study of Mars' crustal magnetic field displacements due to its interaction with the solar wind. EPSC-DPS Joint Meeting 2019, Geneva, Switzerland (2019)
Fan, K.; Wei, Y.; Fränz, M.; Dubinin, E. M.; Mcfadden, J.: Efficiency of Solar wind electric field in accelerating planetary ions. EPSC-DPS Joint Meeting 2019, Geneva, Switzerland (2019)
Fränz, M.; Dubinin, E. M.; Fan, K.; Maes, L.; Halekas, J.; McFadden, J.; Connerney, J.: Mars in the Solar Wind - Simulations and Observations. EPSC-DPS Joint Meeting 2019, Geneva, Switzerland (2019)
Fränz, M.; Dubinin, E. M.; Fan, K.; Maes, L.; Halekas, J.; McFadden, J.: Mars in the Solar Wind. 21st EGU General Assembly, EGU2019, Vienna, Austria (2019)
Franco, A. M. S.; Fränz, M.; Echer, E.; Bolzan, M. J. A.: A Statistical Study of ULF Wave Scales Around Mars Using MEX and MAVEN Observations. 50th Lunar and Planetary Science Conference, The Woodlands, Texas, USA (2019)
Huybrighs, H.; Roussos, E.; Krupp, N.; Fränz, M.; Futaana, Y.; Barabash, S.; Glassmeier, K.-H.: The search for Europa plume signatures in Galileo plasma particle data. Magnetospheres of the Outer planets conference (MOP), Uppsala, Sweden (2017)
Krupp, N.; Fränz, M.; Roussos, E.; Huybrighs, H.; Barabash, S.; Brandt, P. C.; Paranicas, C.; Mitchell, D. G.; Westlake, J.; Khurana, K.et al.; Jia, X.: Electron measurements in the low-latitude magnetosphere of Jupiter and in the vicinity of the Galilean moons: Current knowledge and future investigations with the PEP JEI and JoEE sensors onboard the JUICE spacecraft. Magnetospheres of the Outer planets conference (MOP), Uppsala, Sweden (2017)
Chai, L.; Wei, Y.; Wan, W.; Zhang, T.; Fraenz, M.; Dubinin, E.; Zhang, H.; Rong, Z.; Barabash, S.: An induced global magnetic field looping around the magnetotail of Venus. European Geosciences Union General Assembly, Vienna, Austria (2016)
Han, Q.; Wei, Y.; Chai, L.; Rong, Z.; Fraenz, M.; Dubinin, E.; Wan, W.; Rong, Z.; Futaana, Y.: EUV0dependence of Venusian ionopause height over the dayside high-latitude region: VEX and PVO observations. European Geosciences Union General Assembly, Vienna, Austria (2016)
Dubinin, E.; Fraenz, M.; Andrews, D.; Witasse, O.; Barabash, S.: Ionosphere of Mars as seen by Mars Express. Effect of crustal fields. European Planetary Science Congress, Nantes, France (2015)
Fränz, M.; Dubinin, E.; Andrews, D.; Nilsson, H.; Barabash, S.; Fedorov, A.: Cold Ion Escape from the Martian Ionosphere - 2007-2014. European Geosciences Union General Assembly, Vienna, Austria (2015)
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".
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.