Arnold, W.; Becker, M.M.; Fischer, H.-H.; Ibrahim, B.; Knapmeyer, M.; Krueger, H.: Complete CASSE Acceleration Data Measured upon Landing of Philae on Comet 67P at Agilkia. Acta Astronautica (2025)
Krüger, H.; Thompson, M. S.; Kobayashi, M.; Mangano, V.; Moroni, M.; Milillo, A.; Keller, L. P.; Sasaki, S.; Zender, J.; Domingue, D.et al.; Benkhoff, J.; Galli, A.; LeBlanc, F.; Murakami, G.; Sarantos, M.; Savin, D. W.: Understanding the Dust Environment at Mercury: From Surface to Exosphere. The Planetary Science Journal 5, p. 36 (2024)
Sterken, V. J.; Hunziker, S.; Dialynas, K.; Leitner, J.; Sommer, M.; Srama, R.; Baalmann, L. R.; Li, A.; Herbst, K.; Galli, A.et al.; Brandt, P.; Riebe, M.; Baggaley, W. J.; Blanc, M.; Czechowski, A.; Effenberger, F.; Fields, B.; Frisch, P.; Horanyi, M.; Hsu, H. -.; Khawaja, N.; Krüger, H.; Kurth, W. S.; Ligterink, N. F. W.; Linsky, J. L.; Lisse, C.; Malaspina, D.; Miller, J. A.; Opher, M.; Poppe, A. R.; Postberg, F.; Provornikova, E.; Redfield, S.; Richardson, J.; Rowan-Robinson, M.; Scherer, K.; Shen, M. M.; Slavin, J. D.; Sternovsky, Z.; Stober, G.; Strub, P.; Szalay, J.; Trieloff, M.: Synergies between interstellar dust and heliospheric science with an interstellar probe. RAS Techniques and Instruments 2, pp. 532 - 547 (2023)
Borisov, N.; Krüger, H.: Formation of the Thebe Extension in the Ring System of Jupiter. Journal of Geophysical Research: Space Physics 126 (11), e2021JA029654 (2021)
Kobayashi, M.; Krüger, H.: 2 Jahre am Kometen 67P/Churyumov-Gerasimenko: Raumsonde Rosetta. Journal of the Japanese Society for Planetary Science 30 (4), pp. 158 - 168 (2021)
Krüger, H.; Kobayashi, M.; Strub, P.; Klostermeyer, G.-M.; Sommer, M.; Kimura, H.; Grün, E.; Srama, R.: Modelling cometary meteoroid stream traverses of the Martian Moons eXploration (MMX) spacecraft en route to Phobos. Earth, Planets and Space 73, 93 (2021)
Krüger, H.; Srama, R.: Eine Reise zum Asteroiden Phaethon: die Mission DESTINY+ besucht den Ursprungskörper der Geminiden. Sterne und Weltraum 11, 45, pp. 37 (2021)
Szalay, J. R.; Pokorný, P.; Malaspina, D. M.; Pusack, A.; Bale, S. D.; Battams, K.; Gasque, L. C.; Goetz, K.; Krüger, H.; McComas, D. J.et al.; Schwadron, N. A.; Strub, P.: Collisional Evolution of the Inner Zodiacal Cloud. The Planetary Science Journal 2 (5), 185 (2021)
Wozniakiewicz, P.J.; Bridges, J.; Burchell, M.J.; Carey, W.; Carpenter, J.; Corte, V. D.; Dignam, A.; Genge, M.J.; Hicks, L.; Hilchenbach, M.et al.; Hillier, J.; Kearsley, A.T.; Krüger, H.; Merouane, S.; Palomba, E.; Postberg, F.; Schmidt, J.; Srama, R.; Trieloff, M.; van-Ginneken, M.; Sterken, V.J.: A cosmic dust detection suite for the deep space Gateway. Advances in Space Research 68 (1), pp. 85 - 104 (2021)
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).
The Sun’s planets and small objects have undergone substantial evolution. Deciphering the history of our cosmic home is not a simple task even though we now have access to a multitude of data gathered by space missions, remote observations, and laboratory studies of diverse samples. A significant fraction of materials available for the study of planetary bodies come from meteorites.
Data from NASA's Dawn mission, analyzed for the first time, suggest that brine rose from the depths and organic compounds were deposited in Urvara crater.