Rizos, J. L.; Sunshine, J. M.; Daly, R. T.; Nathues, A.; De Sanctis, C.; Raponi, A.; Pasckert, J. H.; Farnham, T. L.; Kloos, J.; Ortiz, J. L.: New Candidates for Organic-rich Regions on Ceres. The Planetary Science Journal 5, p. 262 (2024)
Pasckert, J. H.; Schmedemann, N.; Nathues, A.; Hiesinger, H.; van der Bogert, C. H.: The young resurfacing events at Ceres' Occator Crater: Seismic shaking or deposition of cryovolcanic material? Icarus 389, p. 115259 (2023)
Pasckert, J. H.; Schmedemann, N.; Nathues, A.; Hiesinger, H.; van der Bogert, C. H.: The young resurfacing events at Ceres' Occator Crater: Seismic shaking or deposition of cryovolcanic material? Icarus 389, p. 115259 (2023)
Castillo-Rogez, J.; Neveu, M.; Vinogradoff, V.; Miller, K. E.; Sori, M. M.; Tosi, F.; Schmidt, B.; Scully, J. E. C.; Melwani Daswani, M.; Hughson, K.et al.; McSween, H.; De Sanctis, C.; Quick, L.; Ermakov, A.; Thangjam, G.; Otto, K.; Krohn, K.; Schenk, P.; Nathues, A.; Raymond, C.: Science Drivers for the Future Exploration of Ceres: From Solar System Evolution to Ocean World Science. The Planetary Science Journal 3, p. 64 (2022)
Hernandez, J. A.; Nathues, A.; Hiesinger, H.; Goetz, W.; Goetz, W.; Hoffmann, M.; Schmedemann, N.; Thangjam, G.; Mengel, K.; Sarkar, R.: Geology and colour of Kupalo crater on Ceres. Planetary and Space Science 220, p. 105538 (2022)
Raymond, C. A.; Ermakov, A. I.; Castillo-Rogez, J. C.; Marchi, S.; Johnson, B. C.; Hesse, M. A.; Scully, J. E. C.; Buczkowski, D. L.; Sizemore, H. G.; Schenk, P. M.et al.; Nathues, A.; Park, R. S.; Prettyman, T. H.; Quick, L. C.; Keane, J. T.; Rayman, M. D.; Russell, C. T.: Impact-driven mobilization of deep crustal brines on dwarf planet Ceres. Nature astronomy 4 (8), pp. 741 - 747 (2020)
Schmidt, B.E.; Sizemore, H.G.; Duarte, K.D.; Romero, V.N.; Scully, J. E. C.; Hughson, K. H. G.; Schenk, P. M.; Buczkowski, D.L.; Williams, D. A.; Nathues, A.et al.; Castillo-Rogez, J. C.; Raymond, C. A.; Russell, C.T.: Hydrological evolution of Occator crater: Implications from pingo and frost heave morphology. (submitted)
Schmidt, B. E.; Sizemore, H. G.; Hughson, K. H. G.; Duarte, K. D.; Romero, V. N.; Scully, J. E. C.; Schenk, P. M.; Buczkowski, D. L.; Williams, D. A.; Nathues, A.et al.; Udell, K.; Castillo-Rogez, J. C.; Raymond, C. A.; Russell, C. T.: Post-impact cryo-hydrologic formation of small mounds and hills in Ceres’s Occator crater. Nature Geoscience 13 (9), pp. 605 - 610 (2020)
Chilton, H. T.; Schmidt, B. E.; Duarte, K.; Ferrier, K. L.; Hughson, K. H. G.; Scully, J. E. C.; Wray, J. J.; Sizemore, H. G.; Nathues, A.; Platz, T.et al.; Schorghofer, N.; Schenk, P. M.; Landis, M. E.; Bland, M.; Byrne, S.; Russell, C. T. R.; Raymond, C. A.: Landslides on Ceres: Inferences Into Ice Content and Layering in the Upper Crust. Journal of Geophysical Research: Planets 124 (6), pp. 1512 - 1524 (2019)
Combe, J.-P.; Raponi, A.; Tosi, F.; De Sanctis, M. C.; Carrozzo, F. G.; Zambon, F.; Ammannito, E.; Hughson, K. H.G.; Nathues, A.; Hoffmann, M.et al.; Platz, T.; Thangjam, G. S.; Schorghofer, N.; Schröder, S.; Byrne, S.; Landis, M. E.; Ruesch, O.; McCord, T. B.; Johnson, K. E.; Magar Singh, S.; Raymond, C. A.; Russell, C. T.: Exposed H2O-rich areas detected on Ceres with the dawn visible and infrared mapping spectrometer. Icarus 318, pp. 22 - 41 (2019)
Duarte, K. D.; Schmidt, B. E.; Chilton, H. T.; Hughson, K. H. G.; Sizemore, H. G.; Ferrier, K. L.; Buffo, J. J.; Scully, J. E. C.; Nathues, A.; Platz, T.et al.; Landis, M.; Byrne, S.; Bland, M.; Russell, C. T.; Raymond, C. A.: Landslides on Ceres: Diversity and Geologic Context. Journal of Geophysical Research: Planets 124 (12), pp. 3329 - 3343 (2019)
Li, J.-Y.; Schröder, S. E.; Mottola , S.; Nathues, A.; Castillo-Rogez, J. C.; Schorghofer, N.; Williams, D. A.; Ciarniello, M.; Longobardo, A.; Raymond, C. A.et al.; Russellg, C. T.: Spectrophotometric modeling and mapping of Ceres. Icarus 322, pp. 144 - 167 (2019)
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".