Witte, M.; Rosenbauer, H.; Banaszkiewicz, M.; Fahr, H.: The ULYSSES Neutral Gas experiment: Determination of the velocity and temperature of the interstellar neutral helium. Advances in Space Research 13, pp. 121 - 130 (1993)
Goldstein, B. E.; Goldstein, R.; Neugebauer, M.; Fuselier, S. A.; Shelley, E. G.; Balsiger, H.; Kettmann, G.; Ip, W.-H.; Rosenbauer, H.; Schwenn, R.: Observations of Plasma Dynamics in the Coma of P/Halley by the Giotto Ion Mass Spectrometer. Journal Geophysical Research 97, pp. 4121 - 4132 (1992)
Sauer, K.; Roatsch, T.; Motschman, U.; Schwingenshuh, K.; Lundin, R.; Rosenbauer, H.; Livi, S.: Observations of plasma boundaries and phenomena around Mars with Phobos 2. Journal Geophysical Research 97, pp. 6227 - 6233 (1992)
Schwingenshuh, K.; Riedler, W.; Zhang, T. L.; Lichtenegger, H.; Rosenbauer, H.; Livi, S.; Gevai, G.; Gringauz, K.; Verigin, M.; Yeroshenko, Y.et al.; Moehlmann, D.; Roatsch, T.; Lundin, R.; Russel, C. T.; Luhmann, J.: The Martian magnetic field environment: induced or dominated by an intrinsic magnetic field? Advances in Space Research 12 (9), pp. 213 - 219 (1992)
Kirsch, E.; Keppler, E.; Witte, M.; Rosenbauer, H.; Livi, S.; Schwingenschuh, K.; McKenna-Lawlor, S. M. P.; Afonin, V. V.; O'Sullivan, D.; Thompson, A.: Pick-up ions (Eo+ > 55 keV) measured near Mars by Phobos-2 in February/March 1989. Annales Geophysicae 9, pp. 761 - 767 (1991)
Kirsch, E.; Keppler, E.; Witte, M.; Rosenbauer, H.; Livi, S.; Schwingenshuh, K.; McKenna-Lawlor, S.; Afonin, V. V.; O'Sullivan, D.; Thompson, A.: Pickup ions ( E O+ > 55 keV) measured near Mars by Phobos-2 in February/March 1989. Annales Geophysicae 9, pp. 761 - 767 (1991)
Verigin, M. I.; Gringauz, K. I.; Kotova, G. A.; Shutte, N. M.; Rosenbauer, H.; Livi, S.; Richter, A. K.; Riedler, W.; Schwingenshuh, K.; Szego, K.: On the problem of the Martian atmosphere dissipation: PhOBOS 2 TAUS spectrometer results. Journal Geophysical Research 96, pp. 19315 - 19320 (1991)
Verigin, M. I.; Shutte, N. M.; Galeev, A. A.; Gringauz, K. I.; Kotova, G. A.; Remizov, A. P.; Rosenbauer, H.; Hemmerich, P.; Livi, S.; Richter, A. K.et al.; Apathy, I.; Szego, K.; Riedler, W.; Schwingenshuh, K.; Steller, M.; Yeroshenko, Y. G.: Ions of planetary origin in the Martian magnetosphere (Phobos 2/Taus experiment). Planetary and Space Science 39, pp. 131 - 137 (1991)
Ip, W.-H.; Balsiger, H.; Geiss, J.; Goldstein, B. E.; Kettmann, G.; Lazarus, A.; Meier, A. J.; Rosenbauer, H.; Schwenn, R.; Shelley, E.: Giotto IMS measurements of the production rate of hydrogen cyanide in the coma of comet Halley. Annales Geophysicae 8 (5), pp. 319 - 326 (1990)
Kettmann, G.; Ip, W.-H.; Balsiger, H.; Goldstein, B. E.; Meier, A.; Rosenbauer, H.; Schwenn, R.; Shelley, E. G.: Cometary ion flow variations at comet P/Halley as observed by the Giotto IMS experiment. Annales Geophysicae 8, pp. 229 - 238 (1990)
Pilipp, W. G.; Miggenrieder, H.; Mühlhäuser, K.-H.; Rosenbauer, H.; Schwenn, R.: Large-scale variations of thermal electron parameters in the solar wind between 0.3 and 1 AU. Journal Geophysical Research 95, pp. 6305 - 6329 (1990)
Rosenbauer, H.; Shutte, N.; Apathy, I.; Verigin, M.; Witte, M.; Galeev, A.; Gringauz, K.; Grünwaldt, H.; Jockers, K.; Kiraly, P.et al.; Kotova, G.; Livi, S.; Marsch, E.; Remizov, A.; Richter, A.; Riedler, W.; Szego, K.; Hemmerich, P.; Schwenn, R.; Schwingenschuh, K.; Steller, M.: First meansurements of ions of Martian origin and observation of a plasma layer in the magnetosphere of Mars: the TAUS experiment on the spacecraft PHOBOS 2. Sov. Astron. Letter 16, pp. 156 - 160 (1990)
Rosenbauer, H.; Shutte, N.; Apathy, I.; Verigin, M.; Witte, M.; Galeev, A.; Gringauz, K.; Grünwaldt, H.; Jockers, K.; Kiraly, P.et al.; Kotova, G.; Livi, S.; Marsch, E.; Remizov, A.; Richter, A.; Riedler, W.; Szego, K.; Hemmerich, P.; Schwenn, R.; Schwingenschuh, K.; Steller, M.: Evidence of a plasmasheet in the Martian magnetotail based on the TAUS experiment data from the `Phobos-2' spacecraft. Pis'ma v Astronomicheskie Zhurnal 16, pp. 368 - 377 (1990)
Tu, C.-Y.; Marsch, E.; Rosenbauer, H.: The dependence of MHD turbulence spectra on the inner solar wind stream structure near solar minimum. Geophysical Research Letters 17, pp. 283 - 286 (1990)
Goldstein, B. E.; Altwegg, K.; Balsiger, H.; Fuselier, S. A.; Ip, W.-H.; Meier, A.; Neugebauer, M.; Rosenbauer, H.; Schwenn, R.: Observations of a shock and a recombination layer at the contact surface of Comet Halley. Journal Geophysical Research 94, pp. 17251 - 17257 (1989)
Marsch, E.; Pilipp, W. G.; Thieme, K. M.; Rosenbauer, H.: Cooling of solar wind electrons inside 0.3 AU. Journal Geophysical Research 94, pp. 6893 - 6898 (1989)
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".