Kutepov, A. A.; Feofilov, A. G.; Medvedev, A. S.; Berger, U.; Kaufmann, M.; Pauldrach, A. W. A.: Infra-red Radiative Cooling/Heating of the Mesosphere and Lower Thermosphere Due to the Small-Scale Temperature Fluctuations Associated with GravityWaves. In: Climate and Weather of the Sun-Earth System (CAWSES) Highlights from a Priority Program, pp. 429 - 442 (Ed. Lübken, F.-J.). Springer, Dordrecht (2012)
Yiğit, E.; Medvedev, A. S.: Extending the Parameterization of Gravity Waves into the Thermosphere and Modeling Their Effects. In: Climate and Weather of the Sun-Earth System (CAWSES) Highlights from a Priority Program, pp. 467 - 480 (Ed. Lübken, F.-J.). Springer, Dordrecht (2012)
Machtoub, G.; Medvedev, A.; Hartogh, P.: 14 - Simulations of the water cycle on Mars with a general circulation model. In: Planetary Science, pp. 187 - 194 (Eds. Bhardwaj, A.; Haider, S. A.; Hartogh, P.; Ito, T.). World Scientific Publishing Company, Singapore (2011)
Grygalashvyly, M.; Hartogh, P.; Sonnemann, G. R.; Medvedev, A.: The Doppler-Sonnemann Effect (DSE) on the Photochemistry on Mars. In: Advances in Geosciences, pp. 163 - 176 (Eds. Bhardwaj, A.; Haider, S. A.; Hartogh, P.; Ip, W.-H.; Ito, T. et al.). World Scientific Publishing Co., Singapore (2010)
Sonnemann, G. R.; Hartogh, P.; Grygalashvyly, M.; Medvedev, A.: A New Coupled 3D-Model of the Dynamics and Chemistry of the Martian Atmosphere. In: Advances in Geosciences, pp. 177 - 194 (Eds. Bhardwaj, A.; Haider, S. A.; Hartogh, P.; Ip, W.-H.; Ito, T. et al.). World Scientific Publishing Co., Singapore (2010)
Kuroda, T.; Medvedev, A.; Hartogh, P.: The Martian Atmosphere During the 2001 Global Dust Storm: Observations with SWAS and Simulations with a General Circulation Model. In: Advances in Geosciences, Volume 3, Planetary Sciences (PS), pp. 155 - 154 (Eds. Ip, W.; Bhardwaj, A.; Leblanc, F.; Kasaba, Y.; Hartogh, P. et al.). World Scientific Publishing Co., Singapore (2006)
Kuroda, T.; Medvedev, A. S.; Hartogh, P.; Yiğit, E.: Simulation of gravity wave fields and their effects on the large-scale flow in the Martian atmosphere using a high-resolution general circulation model. Sixth International Workshop on the Mars Atmosphere: Modelling and Observations, Granada, Spain (2017)
Medvedev, A. S.; Yiğit, E.; Kuroda, T.; Mockel, C.; Hartogh, P.: Gravity waves and their effects from the Martian troposphere to thermosphere. Sixth international workshop on the Mars atmosphere: Modelling and observations , Granada, Spain (2017)
Mockel, C.; Medvedev, A. S.; Hartogh, P.; Yiğit, E.; Nakagawa, H.; Terada, N.; Kuroda, T.; Seki, K.; Evans, S.; Schneider, N. M.et al.; Jain, S. K.; Deighan, J. I.; McClintock, W. E.; Jakosky, B. M.: Martian thermosphere in MAVEN/IUVS data and MPI-MGCM. Sixth International Workshop on the Mars Atmosphere: Modelling and Observations , Granada, Spain (2017)
Yiğit, E.; Medvedev, A. S.; Hartogh, P.; Kuroda, T.; Siskind, D. E.: Gravity wave-induced high altitude ice clouds on Mars. Sixth international workshop on the Mars atmosphere: Modelling and observations , Granada, Spain (2017)
Medvedev, A. S.; Yiğit, E.: The role and importance of gravity waves in the mesosphere and thermosphere of Mars. AGU Fall Meeting, San Francisco, USA (2015)
Kuroda, T.; Kasaba, Y.; Medvedev, A. S.; Hartogh, P.: CO2 snowfalls modulated by the baroclinic waves in the northern winter polar atmosphere of Mars. Fifth international workshop on the Mars Atmosphere: Modelling and observations, Oxford, UK (2014)
Kuroda, T.; Medvedev, A. S.; Hartogh, P.: Radiative forcing by molecules in the stratosphere of Jupiter. 11th Annual Meeting, Asia Oceania Geosciences Society, Sapporo, Japan (2014)
Kuroda, T.; Medvedev, A. S.; Hartogh, P.: Parameterization of the radiative forcing in the stratosphere of Jupiter. 40th COSPAR Scientific Assembly, Moscow, Russia (2014)
Kuroda, T.; Medvedev, A. S.; Kasaba, Y.; Hartogh, P.: CO2 snowfalls, seasonal ice cap formations and baroclinic waves in the winter polar atmosphere of Mars. 40th COSPAR Scientific Assembly, Moscow, Russia (2014)
Kuroda, T.; Medvedev, A. S.; Kasaba, Y.; Hartogh, P.: Weather Forecasts on Mars: CO2 Snowfalls Related to the Baroclinic Waves in the Northern Winter Polar Atmosphere. Eighth International Conference on Mars, Pasadena, USA (2014)
Medvedev, A. S.; Yiğit, E.; Kuroda, T.; Hartogh, P.: Response of the Martian upper atmosphere to lower atmospheric dust storms: GCM study. Fifth international workshop on the Mars Atmosphere: Modelling and observations, Oxford, UK (2014)
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".