Pajola, M.; Mottola, S.; Hamm, M.; Fulle, M.; Davidsson, B.; Güttler, C.; Sierks, H.; Naletto, G.; Arnold, G.; Grothues, H.-G.et al.; Jaumann, R.; Michaelis, H.; Bibring, J. P.; Barbieri, C.; Lamy, P. L.; Rodrigo, R.; Koschny, D.; Rickman, H.; Keller, H. U.; Agarwal, J.; A'Hearn, M. F.; Barucci, M. A.; Bertaux, J. L.; Bertini, I.; Boudreault, S.; Cremonese, G.; Da Deppo, V.; Debei, S.; De Cecco, M.; Deller, J.; El Maarry, M. R.; Feller, C.; Fornasier, S.; Gicquel, A.; Groussin, O.; Gutierrez, P. J.; Hofmann, M.; Hviid, S. F.; Ip, W. H.; Jorda, L.; Knollenberg, J.; Kramm, J. R.; Kuehrt, E.; Kuppers, M.; La Forgia, F.; Lara, L. M.; Lin, Z. Y.; Lazzarin, M.; Moreno, J. J. L.; Lucchetti, A.; Marzari, F.; Massironi, M.; Michalik, H.; Oklay, N.; Pommerol, A.; Preusker, F.; Scholten, F.; Thomas, N.; Tubiana, C.; Vincent, J. B.: The Agilkia boulders/pebbles size-frequency distributions: OSIRIS and ROLIS joint observations of 67P surface. Mon. Not. Roy. Astron. Soc. 462, pp. S242 - S252 (2016)
Hofmann, M.; Güttler, C.; Vincent, J.-B.; Deshapriya, J. D. P.; Pajola, M.; Tubiana, C.; Feller, C.; Barucci, M. A.; Sierks, H.; The OSIRIS Team: Material strength on 67P/Churyumov-Gerasimenko and its influence on cliff stability. European Geosciences Union General Assembly, Vienna, Austria (2017)
Hofmann, M.: Rosetta: Das Abenteuer geht weiter. Öffentlicher Vortrag im Rahmen der 125-Jahr Feier des Felix-Klein-Gymnasiums, Göttingen, Germany (2015)
Hofmann, M.; Sierks, H.; Blum, J.: Small-scale impacts as a trigger for an avalanche in a low-gravity environment. Asteroids, Comets Meteors Conference, Helsinki, Finland (2014)
Hofmann, M.; Sierks, H.; Blum, J.: Small scale impacts as trigger for an avalanche in a low gravity environment. Granular Matter in Low Gravity, Erlangen, Germany (2015)
Hofmann, M.; Sierks, H.; Blum, J.: Small Scale Impacts as trigger for an avalanche in a low gravity environment. European Geosciences Union General Assembly 2014, Vienna, Austria (2014)
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.