Christou, C.; Dadzie, S. K.; Thomas, N.; Marschall, R.; Hartogh, P.; Jorda, L.; Kührt, E.; Wright, I.; Rodrigo, R.: Gas flow in near surface comet like porous structures: application to 67P/Churyumov-Gerasimenko. Planetary and Space Science 161, pp. 57 - 67 (2018)
Korablev, O.; Montmessin, F.; Trokhimovskiy, A.; Fedorova, A. A.; Shakun, A. V.; Grigoriev, A. V.; Moshkin, B. E.; Ignatiev, N. I.; Forget, F.; Lefèvre, F.et al.; Anufreychik, K.; Dzuban, I.; Ivanov, Y. S.; Kalinnikov, Y. K.; Kozlova, T. O.; Kungurov, A.; Makarov, V.; Martynovich, F.; Maslov, I.; Merzlyakov, D.; Moiseev, P. P.; Nikolskiy, Y.; Patrakeev, A.; Patsaev, D.; Santos-Skripko, A.; Sazonov, O.; Semena, N.; Semenov, A.; Shashkin, V.; Sidorov, A.; Stepanov, A. V.; Stupin, I.; Timonin, D.; Titov, A. Y.; Viktorov, A.; Zharkov, A.; Altieri, F.; Arnold, G.; Belyaev, D. A.; Bertaux, J. L.; Betsis, D. S.; Duxbury, N.; Encrenaz, T.; Fouchet, T.; Gérard, J. C.; Grassi, D.; Guerlet, S.; Hartogh, P.; Kasaba, Y.; Khatuntsev I. Krasnopolsky, V. A.; Kuzmin, R. O.; Lellouch, E.; Lopez-Valverde, M. A.; Luginin, M.; Määttänen, A.; Marcq, E.; Martin Torres, J.; Medvedev, A. S.; Millour, E.; Olsen K. S. Patel, M. R.; Quantin-Nataf, C.; Rodin, A. V.; Shematovic, V. I.; Thomas I. Thomas, N.; Vazquez, L.; Vincendon, M.; Wilquet, V.; Wilson, C. F.; Zasova, L. V.; Zelenyi, L. M.; Zorzano, M. P.: The Atmospheric Chemistry Suite (ACS) of Three Spectrometers for the ExoMars 2016 Trace Gas Orbiter. Space Science Reviews 214, 7 (2018)
Kotiranta, M.; Jacob, K.; Kim, H.; Hartogh, P.; Murk, a. A.: Optical Design and Analysis of the Submillimeter-Wave Instrument on JUICE. IEEE Transactions on Terahertz Science and Technology 8 (6), pp. 588 - 595 (2018)
Read, W. G.; Tamppari, L. K.; Livesey, N. J.; Clancy, R. T.; Forget, F.; Hartogh, P.; Rafkin, S. C.R.; Chattopadhyay, G.: Retrieval of wind, temperature, water vapor and other trace constituents in the Martian Atmosphere. Planetary and Space Science 161, pp. 26 - 40 (2018)
Reshetnyk, V. M.; Skorov, Y. V.; Lacerda, P.; Hartogh, P.; Rezac, L.: Dynamics of Dust Particles of Different Structure: Application to the Modeling of Dust Motion in the Vicinity of the Nucleus of Comet 67P/Churyumov–Gerasimenko. Solar System Research 52 (3), pp. 266 - 281 (2018)
Shaposhnikov, D. S.; Rodin, A. V.; Medvedev, A. S.; Fedorova, A. A.; Kuroda, T.; Hartogh, P.: Modeling the Hydrological Cycle in the Atmosphere of Mars: Influence of a Bimodal Size Distribution of Aerosol Nucleation Particles. Journal of Geophysical Research: Planets 123 (2), pp. 508 - 526 (2018)
Skorov, Y. V.; Reshetnyk, V.; Rezac, L.; Zhao, Y.; Marschall, R.; Blum, J.; Hartogh, P.: Dynamical properties and acceleration of hierarchical dust in the vicinity of comet 67P/Churyumov–Gerasimenko. Monthly Notices of the Royal Astronomical Society 477 (4), pp. 4896 - 4907 (2018)
Yamada, T.; Rezac, L.; Larsson, R.; Hartogh, P.; Yoshida, N.; Kasai, Y.: Solving non-LTE problems in rotational transitions using the Gauss–Seidel method and its implementation in the Atmospheric Radiative Transfer Simulator. Astronomy and Astrophysics 619, A181 (2018)
Yiğit, E.; Medvedev, A. S.; Hartogh, P.: Influence of gravity waves on the climatology of high-altitude Martian carbon dioxide ice clouds. Annales Geophysicae 36, pp. 1631 - 1646 (2018)
Nedoluha, G. E.; Kiefer, M.; Lossow, S.; Gomez, R. M.; Kämpfer, N.; Lainer, M.; Forkman, P.; Christensen, O. M.; Oh, J. J.; Hartogh, P.et al.; Anderson, J.; Bramstedt, K.; Dinelli, B. M.; Garcia-Comas, M.; Hervig, M.; Murtagh, D.; Raspollini, P.; Read, W. G.; Rosenlof, K.; Stiller, G. P.; Walker, K. A.: The SPARC water vapor assessment II: intercomparison of satellite and ground-based microwave measurements. Atmospheric Chemistry and Physics 17, pp. 14543 - 14558 (2017)
Cavalié, T.; Venot, O.; Selsis, F.; Hersant, F.; Hartogh, P.; Leconte, J.: Thermochemistry and vertical mixing in the tropospheres of Uranus and Neptune: How convection inhibition can affect the derivation of deep oxygen abundances. Icarus 291, pp. 1 - 16 (2017)
Kuroda, T.; Sagawa, H.; Sekine, Y.; Kasai, Y.; Hartogh, P.: Frontier of Planetary Science Revealed by Terahertz Wave Observations in Deep-space Explorations. Journal of The Remote Sensing Society of Japan 37 (4), pp. 351 - 361 (2017)
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".