Chilson, P. B.; Palmer, R. D.; Muschinski, A.; Hooper, D. A.; Schmidt, G.; Steinhagen, H.: SOMARE-99: A demonstrational field campaign for ultrahigh-resolution VHF atmospheric profiling using frequency diversity. Radio Science 36 (4), S. 695 - 707 (2001)
Muschinski, A.; Chilson, P. B.; Palmer, R. D.; Hooper, D. A.; Schmidt, G.; Steinhagen, H.: Boundary-layer convection and diurnal variation of vertical-velocity characteristics in the free troposphere. Quarterly Journal Royal Meteorological Society 127, S. 423 - 443 (2001)
Palmer, R. D.; Chilson, P. B.; Muschinski, A.; Schmidt, G.; Yu, T.-Y.; Steinhagen, H.: SOMARE-99: Observations of tropospheric scattering layers using multiple-frequency range imaging. Radio Science 36 (4), S. 681 - 693 (2001)
Chilson, P. B.; Belova, E.; Rietveld, M. T.; Kirkwood, S.; Hoppe, U.-P.: First artificially induced modulation of PMSE using the EISCAT heating facility. Geophysical Research Letters 27 (23), S. 3801 - 3804 (2000)
Muschinski, A.; Chilson, P. B.; Kern, S.; Nielinger, J.; Schmidt, G.; Prenosil, T.: First frequency-domain interferometry observation of large-scale vertical motion in the atmosphere. Journal of the Atmospheric Sciences 56, S. 1248 - 1259 (1999)
Chilson, P. B.; Muschinski, A.; Schmidt, G.: First observations of Kelvin-Helmholtz billows in an upper level jet stream using VHF frequency domain interferometry. Radio Science 32, S. 1149 - 1160 (1997)
Chilson, P. B.; Czechowsky, P.; Schmidt, G.: A Comparison of ambipolar diffusion coefficients in meteor trains using VHF radar and UV lidar. Geophysical Research Letters 23, S. 2745 - 2748 (1996)
Chilson, P. B.; Schmidt, G.: Implementation of frequency domain interferometry at the SOUSY VHF radar: First results. Radio Science 31, S. 263 - 272 (1996)
Cohn, S. A.; Chilson, P. B.: NCAR workshop on multiple-receiver and multiple-frequency techniques for wind profiling. Bull. American Met. Soc. 76, S. 2474 - 2480 (1995)
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, S. 39 - 42 (Hg. Edwards, B.). SCOSTEP Secret., Boulder (2000)
Latteck, R.; Rüster, R.; Röttger, J.; Chilson, P. B.; Barabash, V.: Comparison of polar mesosphere summer echoes observed with the Alwin radar at 69°N, the SOUSY-Svalbard-Radar at 78°N, and the esrad radar at 68°N in summer 1999. In: Proc. 9th Workshop on Technical and Scientific Aspects of MST Radar, Toulouse, France 2000, S. 100 - 103 (Hg. 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, S. 43 - 46 (Hg. Edwards, B.). SCOSTEP Secret., Boulder (2000)
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, S. 326 - 329 (Hg. 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, S. 67 - 72 (Hg. 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, S. 88 - 91 (Hg. Edwards, B.). SCOSTEP Secret., Boulder (1996)
Chilson, P. B.; Czechowsky, P.; Schmidt, G.: VHF aspect sensitivity measurements using frequency domain interferometry. In: Solar-Terrestrial Energy Program, Proc. 7th Workshop on Technical and Scientific Aspects of MST Radar, Hilton Head Island/USA 1995, S. 18 (Hg. Edwards, B.). SCOSTEP Secret., Boulder (1996)
Chilson, P. B.; Czechowsky, P.; Schmidt, G.: A comparison of ambipolar diffusion coefficients near the mesopause as determined by VHF radar and UV lidar observations. In: Solar-Terrestrial Energy Program, Proc. 7th Workshop on Technical and Scientific Aspects of MST Radar, Hilton Head Island/USA 1995, S. 286 - 289 (Hg. Edwards, B.). SCOSTEP Secret., Boulder (1996)
Chilson, P. B.; Muschinski, A.; Schmidt, G.: Simultaneous observations of a jet stream passage using VHF FDI and a microbarometer. In: Solar-Terrestrial Energy Program, Proc. 7th Workshop on Technical and Scientific Aspects of MST Radar, Hilton Head Island/USA 1995, S. 113 - 116 (Hg. Edwards, B.). SCOSTEP Secret., Boulder (1996)
Muschinski, A.; Chilson, P. B.; Schmidt, G.; Hollmann, R.: FDI measurements with the SOUSY VHF Radar: A comparison between the time series of layer altitudes and Doppler shifts. In: Solar-Terrestrial Energy Program, Proc. 7th Workshop on Technical and Scientific Aspects of MST Radar, Hilton Head Island/USA 1995, S. 407 - 410 (Hg. 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.