Grün, E.; Agarwal, J.; Altobelli, N.; Altwegg, K.; Bentley, M. S.; Biver, N.; Della Corte, V.; Edberg, N.; Feldman, P. D.; Galand, M.et al.; Geiger, B.; Götz, C.; Grieger, B.; Güttler, C.; Henri, P.; Hofstadter, M.; Horanyi, M.; Jehin, E.; Krüger, H.; Lee, S.; Mannel, T.; Morales, E.; Mousis, O.; Müller, M.; Opitom, C.; Rotundi, A.; Schmied, R.; Schmidt, F.; Sierks, H.; Snodgrass, C.; Soja, R. H.; Sommer, M.; Srama, R.; Tzou, C.-Y.; Vincent, J.-B.; Yanamandra-Fisher, P.; A'Hearn, M. F.; Erikson, A. I.; Barbieri, C.; Barucci, M. A.; Bertaux, J.-L.; Bertini, I.; Burch, J.; Colangeli, L.; Cremonese, G.; Da Deppo, V.; Davidsson, B.; Debei, S.; De Cecco, M.; Deller, J.; Feaga, L. M.; Ferrari, M.; Fornasier, S.; Fulle, M.; Gicquel, A.; Gillon, M.; Green, S. F.; Groussin, O.; Gutiérrez, P. J.; Hofmann, M.; Hviid, S. F.; Ip, W.-H.; Ivanovski, S.; Jorda, L.; Keller, H. U.; Knight, M. M.; Knollenberg, J.; Koschny, D.; Kramm, J.-R.; Kührt, E.; Küppers, M.; Lamy, P. L.; Lara, L. M.; Lazzarin, M.; Lòpez-Moreno, J. J.; Manfroid, J.; Epifani, E. M.; Marzari, F.; Naletto, G.; Oklay, N.; Palumbo, P.; Parker, J. W.; Rickman, H.; Rodrigo, R.; Rodrìguez, J.; Schindhelm, E.; Shi, X.; Sordini, R.; Steffl, A. J.; Stern, S. A.; Thomas, N.; Tubiana, C.; Weaver, H. A.; Weissman, P.; Zakharov, V. V.; Taylor, M. G. G. T.: The 2016 Feb 19 outburst of comet 67P/CG: an ESA Rosetta multi-instrument study. Mon. Not. Roy. Astron. Soc. 462, pp. S220 - S234 (2016)
Krüger, H.: Zwei Jahre beim Kometen 67P/Tschurjumow-Gerassimenko - Die Kometenmission Rosetta. Physik in unserer Zeit 06/2016 (47), pp. 274 - 281 (2016)
Podolak, M.; Flandes, A.; Della Corte, V.; Krüger, H.: A simple model for understanding the DIM dust measurement at comet 67P/ChuryumovGerasimenko. Planetary and Space Science 133, pp. 85 - 89 (2016)
Giri, C.; Goesmann, F.; Steele, A.; Gautier, T.; Steininger, H.; Krüger, H.; Meierhenrich, U. J.: Competence evaluation of COSAC flight spare model mass spectrometer: In preparation of arrival of Philae lander on comet 67P/ChuryumovGerasimenko. Planetary and Space Science 106, pp. 132 - 141 (2015)
Krüger, H.; Strub, P.; Grün, E.; Sterken, V. J.: Sixteen Years of Ulysses Interstellar Dust Measurements in the Solar System. I. Mass Distribution and Gas-To-Dust Mass Ratio. Astrophysical Journal 812, pp. 139 - 154 (2015)
Sterken, V. J.; Strub, P.; Krüger, H.; von Steiger, R.; Frisch, P.: Sixteen Years of Ulysses Interstellar Dust Measurements in the Solar System. III. Simulations and Data Unveil New Insights into Local Interstellar Dust. Astrophysical Journal 812, pp. 141 - 165 (2015)
Analyzing the high spatial resolution solar Ca II H and K emission data obtained by the SUNRISE mission and building a model of other stars more active than the Sun
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).
First Light for Sunrise III: the first tests with real sunlight were successful. The balloon-borne solar observatory should be ready for launch at the end of May.