Röttger, J.; Czechowsky, P.; Schmidt, G.: First low power VHF radar observations of tropospheric, stratospheric and mesospheric winds and turbulence at the Arecibo Observatory. Journal of Atmospheric and Terrestrial Physics 43, pp. 789 - 800 (1981)
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)
Röttger, J.; Schmidt, G.; Rüster, R.; Czechowsky, P.; Klostermeyer, J.; Trautner, J.; Pardowitz, I.; Preschel, K. D.; Bruns, M.; Monecke, G.: The SOUSY Svalbard Radar and its contributions to study polar meteorology. In: 30th International Conference on Radar Meteorology, München 2001, pp. 110 - 112. American Meteorological Society (2001)
Chilson, P. B.; Palmer, R. D.; Muschinski, A.; Hooper, D. A.; Schmidt, G.; Steinhagen, H.: SOMARE-99: A Demonstrational field campaign for ultra-high resolution VHF atmospheric profiling using frequency diversity. In: Proc. 9th Workshop on Technical and Scientific Aspects of MST Radar, Toulouse, France 2000, pp. 39 - 42 (Ed. Edwards, B.). SCOSTEP Secret., Boulder (2000)
Palmer, R. D.; Chilson, P. B.; Muschinski, A.; Schmidt, G.; Yu, T.-Y.; Steinhagen, H.: Range imaging using frequency diversity: Theory and application. In: Proc. 9th Workshop on Technical and Scientific Aspects of MST Radar, Toulouse, France 2000, pp. 43 - 46 (Ed. Edwards, B.). SCOSTEP Secret., Boulder (2000)
Koschny, D.; Zender, J.; Knöfel, A.; Chilson, P.; Schmidt, G.: A data evaluation system to compare meteor observations obtained with video and radar. In: Meteoroids 1998, Proc. Int. Conf. held at Tatranská Lomnica, Slovakia, August 17-21, 1998, pp. 135 - 138 (Eds. Baggaley, W. J.; Porubcan, V.). Astronomical Inst., Slovak Acad. Sci., Bratislava (1999)
Chilson, P. B.; Koschny, D.; Knöfel, A.; Schmidt, G.: Observations of the 1996 gemind meteor shower: A comparison of VHF radar echoes and video measurements. In: Solar-Terrestrial Energy Program, Proc. 8th Workshop on Technical and Scientific Aspects of MST Radar, Bangalore, Indien 1997, pp. 326 - 329 (Ed. Edwards, B.). SCOSTEP Secret., Boulder (1998)
Czechowsky, P.; Klostermeyer, J.; Röttger, J.; Rüster, R.; Schmidt, G.: The SOUSY-Svalbard-Radar for middle and lower atmosphere research in polar regions. In: Solar-Terrestrial Energy Program, Proc. 8th Workshop on Technical and Scientific Aspects of MST Radar, Bangalore/Indien 1997, pp. 318 - 321 (Ed. Edwards, B.). SCOSTEP Secret., Boulder (1998)
Hoffmann, P.; Singer, W.; von Gossart, G.; Rees, D.; Schmidt, G.; Lloyd, N. D.: Comparison of tropo-/lower stratospheric winds obtained with the ALOMAR-SOUSY-Radar and the ALOMAR Lidar doppler wind system. In: Solar-Terrestrial Energy Program, Proc. 8th Workshop on Technical and Scientific Aspects of MST Radar, Bangalore/ India 1997, pp. 266 - 269 (Ed. Edwards, B.). SCOSTEP Secret., Boulder (1998)
Chilson, P. B.; Koschny, D.; Knöfel, A.; Schmidt, G.: A comparative investigation of meteor trains near the earth's mesopause using radar and video observations. In: Proc. 24th Annual European Meeting on Atmospheric Studies by Optical Methods, Andenes, Norway, August 18-22, 1997, pp. 67 - 72 (Eds. Wold, H.; Hansen, G.; Hoppe, U.-P.; Måseide, K.; Søraas, F.). Sentraltrykkeriet, Norway (1997)
Chilson, P. B.; Czechowsky, P.; Klostermeyer, J.; Rüster, R.; Schmidt, G.: A study of PMSE-like echoes at mid latitudes using VHF radar and lidar. In: Solar-Terrestrial Energy Program, Proc. 7th Workshop on Technical and Scientific Aspects of MST Radar, Hilton Head Island/USA 1995, pp. 88 - 91 (Ed. Edwards, B.). SCOSTEP Secret., Boulder (1996)
Die ESA-Mission JUICE soll ab 2030 das Jupitersystem erkunden. Nach Vorbeiflügen an Europa und Callisto wird die Raumsonde erstmals in der Geschichte der Raumfahrt in eine Umlaufbahn um den Mond Ganymed einschwenken.
Das Submillimetre Wave Instrument (SWI) wird die Galileischen Monde, die Chemie, die Meteorologie und die Struktur der mittleren Jupiter-Atmosphäre, sowie atmosphärische und magnetosphärische Kopplungsprozesse untersuchen.
Mars Express ist eine ESA Mission zum Mars. Sie hat eine Nutzlast an Bord, die in der Lage ist, die bisher gründlichste Suche nach flüssigem Wasser, das unerlässlich ist für Leben wie wir es kennen, auf dem roten Planeten durchzuführen.
Ein Überblick über alle Arbeits- und Forschungsgruppen der Abteilung für Planetenwissenschaften: Atmosphären der Planeten, Inneres der Planeten, Kleine Körper und Kometen, Oberflächen der Planeten, Plasmaumgebung der Planeten.