Rüster, R.; Czechowsky, P.; Schmidt, G.; Labitzke, K.: VHF radar observations in the stratosphere and mesosphere during a stratospheric warming. Journal of Atmospheric and Terrestrial Physics 45, pp. 161 - 168 (1983)
Weber, G.; Rüster, R.; Klostermeyer, J.: VHF-Radarbeobachtungen von Frontenpassagen im Voralpengebiet. Annalen der Meteorologie 19, pp. 99 - 101 (1982)
Klostermeyer, J.; Rüster, R.: Further Study of a Jet Stream-Generated Kelvin-Helmholtz-Instability. Journal Geophysical Research 86, pp. 6631 - 6637 (1981)
Klostermeyer, J.; Rüster, R.: Radar Observations and Model Computations of a Jet Stream-Generated Kelvin-Helmholtz Instability. Journal Geophysical Research 85, pp. 2841 - 2846 (1980)
Rüster, R.; Czechowsky, P.; Schmidt, G.: VHF-Radar Measurements of Dynamical Processes in the Stratosphere and Mesosphere. Geophysical Research Letters 7, pp. 999 - 1002 (1980)
Czechowsky, P.; Rüster, R.; Schmidt, G.: Variations of Mesospheric Structures in Different Seasons. Geophysical Research Letters 6, pp. 459 - 462 (1979)
Schmidt, G.; Rüster, R.; Czechowsky, P.: Complementary code and digital filtering for detection of weak VHF radar signals from the mesosphere. IEEE Trans. Geosci. Electron. GE-17, pp. 154 - 161 (1979)
Rüster, R.; Woodman, R. F.: Digital Filtering, Calibration and Correlation Analysis of Radar-Echoes from the Tropo- and Stratosphere. Kleinheubacher Berichte 21, pp. 239 - 246 (1978)
Davies, K.; Rüster, R.: Theoretical studies of storm effects in the ionospheric total electron content. Planetary and Space Science 24, pp. 867 - 872 (1976)
Rüster, R.; King, J. W.: Einfluss thermosphärischer Winde während magnetisch gestörter Bedingungen auf die Ionosphäre niederer und mittlerer Breiten. Kleinheubacher Berichte 19, pp. 455 - 460 (1976)
Rüster, R.; King, J. W.: Negative ionospheric storms caused by thermospheric winds. Journal of Atmospheric and Terrestrial Physics 38, pp. 593 - 598 (1976)
Klostermeyer, J.; Rüster, R.; Liu, C. H.: Diurnal variations of acoustic-gravity waves in the F-region. Journal of Atmospheric and Terrestrial Physics 37, pp. 1593 - 1597 (1975)
Burge, J. D.; Eccles, D.; King, J. W.; Rüster, R.: The effects of thermospheric winds on the ionosphere at low and middle latitudes during magnetic disturbances. Journal of Atmospheric and Terrestrial Physics 35, pp. 617 - 623 (1973)
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".
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.