Steininger, H.; Goesmann, F.; Goetz, W.: Influence of Magnesium Perchlorate on the Pyrolysis of Organic Compounds in Mars Analogue Soils. Planetary and Space Science 71, pp. 9 - 17 (2012)
Grant, J. A.; Westall, F.; Beaty, D. W.; Cady, S. L.; Carr, M. H.; Ciarletti, V.; Coradini, A.; Elfving, A.; Glavin, D. P.; Goesmann, F.et al.; Hurowitz, J. A.; Ori, G. G.; Phillips, R. J.; Salvo, C. G.; Sephton, M. A.; Syvertson, M. L.; Vago, J. L.: Two Rovers to the Same Site on Mars, 2018: Possibilities for Cooperative Science. Astrobiology 10, pp. 663 - 685 (2010)
Szopa, C.; Goesmann, F.; Rosenbauer, H.; Sternberg, R.; The COSAC Team: The COSAC experiment of the Rosetta mission: Performance under representative conditions and expected scientific return. Advances in Space Research 40 (2), pp. 180 - 186 (2007)
Meierhenrich, U. J.; Thiemann, W.; Goesmann, F.; Roll, R.; Rosenbauer, H.: Enantioselective amino acid analysis in cometary matter planned for the COSAC instrument onboard ROSETTA lander. International Journal of Astrobiology 1, p. 255 (2002)
Szopa, C.; Meierhenrich, U. J.; Coscia, D.; Janin, L.; Goesmann, F.; Sternberg, A.; Brun, J. F.; Israel, G.; Cabane, M.; Roll, R.et al.; Raulin, F.; Thiemann, W.; Vidal-Madjar, C.; Rosenbauer, H.: Gas chromatography for in situ analysis of a cometary nucleus - IV. Study of capillary column robustness for space application. J. Chromatogr. A 982 (2), pp. 303 - 312 (2002)
Meierhenrich, U. J.; Thiemann, W.; Goesmann, F.; Roll, R.; Rosenbauer, H.: Separation of cometary enantiomers by Rosetta/Roland. Geophysical Research Abstract 3, p. 7597 (2001)
Rosenbauer, H.; Fuselier, S. A.; Ghielmetti, A.; Greenberg, J. M.; Goesmann, F.; Ulamec, S.; Israel, G.; Livi, S.; MacDermott, J. A.; Matsuo, T.et al.; Pillinger, C. T.; Raulin, F.; Roll, R.; Thiemann, W.: The COSAC experiment on the lander of the ROSETTA mission. Advances in Space Research 23, pp. 333 - 340 (1999)
Szopa, C.; Sternberg, R.; Coscia, D.; Cottin, H.; Raulin, F.; Goesmann, F.; Rosenbauer, H.: Gaschromatography for in situ analysis of a cometary nucleus: charcterisation and optimisation of diphenyl/dimethylpolysiloxane stationary phases. Journal of Chromatography A 863, pp. 157 - 169 (1999)
Vago, J. L.; Coates, A. J.; Jaumann, R.; Korablev, O.; Ciarletti, V.; Mitrofanov, I.; Josset, J.-L.; Westall, F.; Sanctis, M. C. D.; Bibring, J.-P.et al.; Rull, F.; Goesmann, F.; Brinckerhoff, W.; Raulin, F.; Sefton-Nash, E.; Svedhem, H.; Kminek, G.; Rodionov, D.; Baglioni, P.: Searching for Traces of Life With the ExoMars Rover. In: From Habitability to Life on Mars, pp. 309 - 347 (Eds. Cabrol, N. A.; Grin, E. A.). Elsevier, Amsterdam (2018)
Goesmann, F.: The Electron Macroscope. In: Proceedings of the 37th ESLAB symposium, ``Tools and technologies for future planetary exploration'', Noordwijk, The Netherlands, 2-4 Dec. 2003, pp. 183 - 186. (2004)
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".