Rengel, M.: Atmospheric Characterization of (Exo)Planets: Spectra, Processes and Structure. Maynooth University, Department of Experimental Physics, Ireland, Online (2021)
Rengel, M.: Júpiter y sus lunas heladas: lo que nos enseñará la misión espacial JUICE. Parque Explora y Planetario de Medellín, Colombia, Online (2021)
Rengel, M.: Investigating physico-chemical mechanisms in (exo)planetary atmospheres and their impact on the observables. DFG SPP1992 virtual all-hands-on-deck meeting, Online (2021)
Gapp, C.; Rengel, M.; Hartogh, P.; Sagawa, H.; Feuchtgruber, H.; Lellouch, E.; Villanueva, G.: Deciphering Jupiter’s atmospheric chemistry as a benchmark for extrasolar gas giants using Herschel/PACS. Virtual Annual Meeting of the German Astronomical Society, Online (2021)
Gapp, C.; Rengel, M.; Hartogh, P.; Sagawa, H.; Feuchtgruber, H.; Lellouch, E.; Villanueva, G.: Characterization of Jupiter’s Atmosphere Using Far Infrared Spectra Measured with PACS Onboard the Herschel Space Observatory. Asia Oceania Geosciences Society 18th Annual Meeting (AOGS2021), Online (2021)
Rengel, M.; Shulyak, D.; Hartogh, P.; Sagawa, H.; Moreno, R.; Jarchow, C.; Breitschwerdt, D.: Ground-based measurements of HCN abundances in the stratosphere of Titan: an inter-comparison with Herschel observations. Asia Oceania Geosciences Society 18th Annual Meeting (AOGS2021), Online (2021)
Rengel, M.: Tracing the gas composition of Titan´s stratosphere from space, ground and airborne-based observatories. Workshop: "The Future of Airborne Infrared/Submm Astronomy: Prospects and Opportunities", online (2021)
Gapp, C.; Rengel, M.; Hartogh, P.; Sagawa, H.; Feuchtgruber, H.; Lellouch, E.; Villanueva, G.: Characterisation of Jupiter´s atmosphere with Herschel/PACS. 2nd Teleconference for the Ariel Working Group “Synergies with Solar System Planets, Online (2021)
Rengel, M.: Atmospheric characterisation of exoplanets through interpretation of their spectra. Online Seminar at Thüringer Landessternwarte , Tautenburg, Germany (2020)
Gapp, C.; Rengel, M.; Hartogh, P.; Sagawa, H.; Feuchtgruber, H.; Lellouch, E.: Retrieval of Jupiter’s atmospheric parameters using far infrared spectra measured with PACS onboard the Herschel Space Observatory. Europlanet Science Congress 2020, online (2020)
Rengel, M.: Key physico-chemical mechanisms in (exo)planetary atmospheres and their impacts on the observables. "Exploring the diversity of extrasolar planets", Virtual Annual Meeting of the German Astronomical Society (2020)
Rengel, M.; Reiners, A.; Cont, D.; Gapp, C.; Khaimova, J.; Lara, L. M.; Shulyak, D.; Yan, F.: Investigating physical and chemical mechanisms in planetary atmospheres and their impacts on the observables. Europlanet Science Congress 2020, online (2020)
Rengel, M.; Shulyak, D.; Hartogh, P.; Sagawa, H.; Moreno, R.; Jarchow, C.: Observing atmospheric HCN on Titan from space and ground-based observatories: an inter-comparison study from Herschel, APEX and IRAM 30m telescopes. Europlanet Science Congress 2020, online (2020)
Shulyak, D.; Rengel, M.; Lara, L.; Nèmec, N.-E.: Studying physics and chemistry in atmospheres of hot Jupiters from future ground-based and space facilities. Europlanet Science Congress 2020, online (2020)
Shulyak, D.; Rengel, M.; A. Reiners; U. Seeman; F. Yan: Remote sensing of exoplanetary atmospheres with ground-based high resolution near-infrared spectroscopy. EPSC-DPS Joint Meeting 2019, Geneva, Switzerland (2019)
The dwarf planet is a bizarre, cryovolcanic world. However, the organic deposits discovered on its surface so far are unlikely to originate from its interior.
The Uranian magnetic field is more expansive than previously thought, according to newly analyzed data from Voyager 2, making it easier to search for moons with oceans.
The Planetary Plasma Environments group (PPE) has a strong heritage in the exploration of planetary magnetospheres and space plasma interactions throughout the solar system. It has contributed instruments to several past missions that flew-by or orbited Jupiter (Galileo, Cassini, Ulysses). The PPE participates in the JUICE mission by contributing hardware and scientific expertise to the Particle Environment Package (PEP).