da Silva Santos, J. M.; Danilovic, S.; Leenaarts, J.; de la Cruz Rodríguez, J.; Zhu, X.; White, S. M.; Vissers, G. J. M.; Rempel, M.: Heating of the solar chromosphere through current dissipation. Astronomy and Astrophysics 661, p. A59 (2022)
Vissers, G. J. M.; Danilovic, S.; Zhu, X.; Leenaarts, J.; Díaz Baso, C. J.; da Silva Santos, J. M.; de la Cruz Rodríguez, J.; Wiegelmann, T.: Active region chromospheric magnetic fields. Observational inference versus magnetohydrostatic modelling. Astronomy and Astrophysics 662, p. A88 (2022)
Jafarzadeh, S.; Solanki, S. K.; Stangalini, M.; Steiner, O.; Cameron, R. H.; Danilovic, S.: High-frequency Oscillations in Small Magnetic Elements Observed with SUNRISE/SuFI. Astrophysical Journal, Suppl. Ser. 229 (1), 10 (2017)
Lites, B. W.; Rempel, M.; Borrero, J. M.; Danilovic, S.: Are Internetwork Magnetic Fields in the Solar Photosphere Horizontal or Vertical? Astrophysical Journal 835 (1), 14 (2017)
Danilovic, S.; Rempel, M.; van Noort, M.; Cameron, R.: Observed and simulated power spectra of kinetic and magnetic energy retrieved with 2D inversions. Astronomy and Astrophysics 594, A103 (2016)
Danilovic, S.; Solanki, S. K.; Livingston, W.; Krivova, N.; Vince, I.: Variation of the Mn I 539.4 nm line with the solar cycle. Astronomy and Astrophysics 587, A33 (2016)
Danilovic, S.; van Noort, M.; Rempel, M.: Internetwork magnetic field as revealed by two-dimensional inversions. Astronomy and Astrophysics 593, A93 (2016)
Yeo, K. L.; Feller, A.; Solanki, S. K.; Couvidat, S.; Danilovic, S.; Krivova, N. A.: Point spread function of SDO/HMI and the effects of stray light correction on the apparent properties of solar surface phenomena. Astronomy and Astrophysics 561, A22 (2014)
Bello González, N.; Danilovic, S.; Kneer, F.: On the structure and dynamics of Ellerman bombs Detailed study of three events and modelling of Hα. Astronomy and Astrophysics 557, A102 (2013)
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.