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Displaying results 171 to 180 of 5274.
  • Publications
    Non-local thermodynamical equilibrium atmospheric modelling of the ultra-hot Jupiter WASP-178b and comparison with UV and optical observations

    Fossati, L., Sreejith, A. G., Koskinen, T., Bonfanti, A., Shulyak, D., Borsa, F., Borthakur, S. P. D., Cubillos, P. E., & Young, M. E. (2025). Non-local thermodynamical equilibrium atmospheric modelling of the ultra-hot Jupiter WASP-178b and comparison with UV and optical observations. Astronomy and Astrophysics, 699, Article A186. https://doi.org/10.1051/0004-6361/202554240

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  • Publications
    Dark skies of the slightly eccentric WASP-18 b from its optical-to-infrared dayside emission

    Deline, A., Cubillos, P. E., Carone, L., Demory, B. ., Lendl, M., Benz, W., Brandeker, A., Guenther, M. N., Heitzmann, A., Barros, S. C. C., Kreidberg, L., Bruno, G., Kitzmann, D., Bonfanti, A., Farnir, M., Persson, C. M., Sousa, S. G., Wilson, T. G., Ehrenreich, D., ... Westerdorff, K. (2025). Dark skies of the slightly eccentric WASP-18 b from its optical-to-infrared dayside emission. Astronomy and Astrophysics, 699, Article A150. https://doi.org/10.1051/0004-6361/202450939

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  • Event
    Sommerschule Alpbach 2025
    08.07.2025
    Die Sommerschule Alpbach ist eine Ideenfabrik und Kaderschmiede für die europäische Raumfahrt. Alljährlich ermöglicht sie 60 jungen Wissenschafter:innen und Ingenieur:innen vertiefende Studien zu jewe
  • Publications
    Minds
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  • Publications
    Ion-kinetic modeling of Mercury's magnetosphere: A reference for BepiColombo's sixth flyby

    Teubenbacher, D., Narita, Y., Varsani, A., Schmid, D., Laky, G., & Exner, W. (2025). Ion-kinetic modeling of Mercury's magnetosphere: A reference for BepiColombo's sixth flyby. Earth Planets and Space, 77(1), Article 109. https://doi.org/10.1186/s40623-025-02231-8

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  • News
    Lithium auf Merkur entdeckt – Grazer Forscher liefern neue Einblicke in planetare Entwicklung
    07.07.2025
    Ein internationales Team unter der Leitung des Grazer Instituts für Weltraumforschung (IWF) der Österreichischen Akademie der Wissenschaften (ÖAW) berichtet in der Fachzeitschrift Nature Communications über eine bedeutende Entdeckung: In der extrem dünnen Atmosphäre des sonnennächsten Planeten Merkur konnten erstmals Hinweise auf das chemische Element Lithium nachgewiesen werden. Wie die Ergebnisse vermuten lassen, gelangt Lithium – gemeinsam mit anderen sogenannten flüchtigen Elementen – durch kontinuierlichen Mikro-Meteoriteneinschlag auf den Planeten und wird bei gelegentlichen Einschlägen größerer Himmelskörper von der Oberfläche wieder freigesetzt. Diese neuen Erkenntnisse tragen wesentlich dazu bei, die Rolle solcher von Meteoriten eingebrachten Elemente bei der chemischen Zusammensetzung des Planeten besser zu verstehen und werfen damit neues Licht auf die Entwicklungsgeschichte des innersten Planeten unseres Sonnensystems.
  • Event
    Bibongo 2025
    07.07.2025
    In der ersten Sommerferienwoche werden Kinder und Jugendliche von 6 bis 12 Jahren ins Volkskundemuseum Graz eingeladen, um sich ihre eigene Stadt zu bauen. Bibongo ist ein Projekt der Kinderfreunde Gr
  • Publications
    Ion cyclotron waves

    Lammer, H., Schmid, D., Volwerk, M., Weichbold, F., Wedlund, C. S., Varsani, A., & Delva, M. (2025). Ion cyclotron waves: a tool for characterizing neutral particle profiles in extended exospheres. Frontiers in Astronomy and Space Sciences, 11, Article 1499346. https://doi.org/10.3389/fspas.2024.1499346

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  • Publications
    Detection of lithium in the exosphere of Mercury

    Schmid, D., Lammer, H., Berezhnoy, A. A., Weichbold, F., Scherf, M., Varsani, A., Volwerk, M., Simon Wedlund, C., Baumjohann, W., Nakamura, R., Murakami, G., & Plaschke, F. (2025). Detection of lithium in the exosphere of Mercury. Nature Communications, 16(6205), Article 6205. https://doi.org/10.1038/s41467-025-61516-4

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  • Event
    Colloquium: The inner region of planet forming disks from VLTI observations
    03.07.2025
    In the last decade, groundbreaking discoveries with high angular resolution facilities like ALMA and SPHERE revealed the rich sub-structure of planet-forming disks on tens of au spatial scales. Howeve
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