Zhu, X.; Wiegelmann, T.; Solanki, S. K.: Magnetohydrostatic modeling of AR11768 based on a S UNRISE/IMaX vector magnetogram. Astronomy and Astrophysics 640, A103 (2020)
Heinemann, S. G.; Temmer, M.; Farrugia, C. J.; Dissauer, K.; Kay, C.; Wiegelmann, T.; Dumbović, M.; Veronig, A. M.; Podladchikova, T.; Hofmeister, S. J.et al.; Lugaz, N.; Carcaboso, F.: CME–HSS Interaction and Characteristics Tracked from Sun to Earth. Solar Physics 294 (9), 121 (2019)
Nasiri, S.; Wiegelmann, T.: Reconstructing nonlinear force-free fields by a constrained optimization. Journal of Atmospheric and Solar-Terrestrial Physics 182, pp. 181 - 185 (2019)
Neukirch, T.; Wiegelmann, T.: Analytical Three-dimensional Magnetohydrostatic Equilibrium Solutions for Magnetic Field Extrapolation Allowing a Transition from Non-force-free to Force-free Magnetic Fields. Solar Physics 294 (12), 171 (2019)
Ugarte-Urra, I.; Crump, N. A.; Warren, H. P.; Wiegelmann, T.: The Magnetic Properties of Heating Events on High-temperature Active-region Loops. The Astrophysical Journal 877 (2), 129 (2019)
Zhu, X.; Wiegelmann, T.: Testing magnetohydrostatic extrapolation with radiative MHD simulation of a solar flare. Astronomy and Astrophysics 631, A162 (2019)
Huang, Z.; Xia, L.; Nelson, C. J.; Liu, J.; Wiegelmann, T.; Tian, H.; Klimchuk, J. A.; Chen, Y.; Li, B.: Magnetic Braids in Eruptions of a Spiral Structure in the Solar Atmosphere. Astrophysical Journal 854 (2), 80 (2018)
Warren, H. P.; Crump, N. A.; Ugarte-Urra, I.; Sun, X.; Aschwanden, M. J.; Wiegelmann, T.: Toward a Quantitative Comparison of Magnetic Field Extrapolations and Observed Coronal Loops. The Astrophysical Journal 860 (1), 46 (2018)
Yeates, A. R.; Amari, T.; Contopoulos, I.; Feng, X.; Mackay, D. H.; Mikić, Z.; Wiegelmann, T.; Hutton, J.; Lowder, C. A.; Morgan, H.et al.; Petrie, G.; Rachmeler, L. A.; Upton, L. A.; Canou, A.; Chopin, P.; Downs, C.; Druckmüller, M.; Linker, J. A.; Seaton, D. B.; Török, T.: Global Non-Potential Magnetic Models of the Solar Corona During the March 2015 Eclipse. Space Science Reviews 214, 99 (2018)
Galsgaard, K.; Madjarska, M. S.; Moreno-Insertis, F.; Huang, Z.; Wiegelmann, T.: Magnetic topological analysis of coronal bright points. Astronomy and Astrophysics 606, A46 (2017)
Various application review phases in 2025. PhD projects in cosmochemistry, planetary science, solar and stellar physics, helioseismology, asteroseismology, ...
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).