Li, J.-Y.; Reddy, V.; Nathues, A.; Le Corre, L.; Izawa, M. R. M.; Cloutis, E. A.; Sykes, M. V.; Carsenty, U.; Castillo-Rogez, J. C.; Hoffmann, M.et al.; Jaumann, R.; Krohn, K.; Mottola, S.; Prettyman, T. H.; Schaefer, M.; Schenk, P.; Schroeder, S. E.; Williams, D. A.; Smith, D. E.; Zuber, M. T.; Konopliv, A. S.; Park, R. S.; Raymond, C. A.; Russell, C. T.: Surface Albedo and Spectral Variability of Ceres. Astrophysical Journal 817 (2), L22 (2016)
Ruesch, O.; Platz, T.; Schenk, P.; McFadden, L. A.; Castillo-Rogez, J. C.; Quick, L. C.; Byrne, S.; Preusker, F.; O'Brien, D. P.; Schmedemann, N.et al.; Williams, D. A.; Li, J.-Y.; Bland, M. T.; Hiesinger, H.; Kneissl, T.; Neesemann, A.; Schaefer, M.; Pasckert, J. H.; Schmidt, B. E.; Buczkowski, D. L.; Sykes, M. V.; Nathues, A.; Roatsch, T.; Hoffmann, M.; Raymond, C. A.; Russell, C. T.: Cryovolcanism on Ceres. Science 353, aaf4286 (2016)
Schäfer, T.; Nathues, A.; Mengel, K.; Izawa, M. R. M.; Cloutis, E. A.; Schäfer, M.; Hoffmann, M.: Spectral parameters for Dawn FC color data: Carbonaceous chondrites and aqueous alteration products as potential cerean analog materials. Icarus 265, pp. 149 - 160 (2016)
Thangjam, G.; Nathues, A.; Mengel, K.; Schäfer, M.; Hoffmann, M.; Cloutis, E. A.; Mann, P.; Müller, C.; Platz, T.; Schäfer, T.: Three-dimensional spectral analysis of compositional heterogeneity at Arruntia crater on (4) Vesta using Dawn FC. Icarus 267, pp. 344 - 363 (2016)
Izawa, M. R. M.; Schäfer, T.; Pietrasz, V. B.; Cloutis, E. A.; Mann, P.; Nathues, A.; Mengel, K.; Schäfer, M.; Thangjam, G.; Hoffmann, M.et al.; Tait, K. T.; Applin, D. M.: Effects of viewing geometry, aggregation state, and particle size on reflectance spectra of the Murchison CM2 chondrite deconvolved to Dawn FC band passes. Icarus 266, pp. 235 - 248 (2015)
Nathues, A.; Hoffmann, M.; Schaefer, M.; Le Corre, L.; Reddy, V.; Platz, T.; Cloutis, E. A.; Christensen, U.; Kneissl, T.; Li, J.-Y.et al.; Mengel, K.; Schmedemann, N.; Schaefer, T.; Russell, C. T.; Applin, D. M.; Buczkowski, D. L.; Izawa, M. R. M.; Keller, H. U.; OBrien, D. P.; Pieters, C. M.; Raymond, C. A.; Ripken, J.; Schenk, P. M.; Schmidt, B. E.; Sierks, H.; Sykes, M. V.; Thangjam, G. S.; Vincent, J.-B.: Sublimation in bright spots on Ceres. Nature 528, pp. 237 - 240 (2015)
Garry, W. B.; Williams, D. A.; Yingst, R. A.; Mest, S. C.; Buczkowski, D. L.; Tosi, F.; Schäfer, M.; Le Corre, L.; Reddy, V.; Jaumann, R.et al.; Pieters, C. M.; Russell, C. T.; Raymond, C. A.; The Dawn Science Team: Geologic mapping of ejecta deposits in Oppia Quadrangle, Asteroid (4) Vesta. Icarus 244, pp. 104 - 119 (2014)
Kneissl, T.; Schmedemann, N.; Reddy, V.; Williams, D. A.; Walter, S. H. G.; Neesemann, A.; Michael, G. G.; Jaumann, R.; Krohn, K.; Preusker, F.et al.; Roatsch, T.; Le Corre, L.; Nathues, A.; Hoffmann, M.; Schäfer, M.; Buczkowski, D.; Garry, W. B.; Yingst, R. A.; Mest, S. C.; Russell, C. T.; Raymond, C. A.: Morphology and formation ages of mid-sized post-Rheasilvia craters - Geology of quadrangle Tuccia, Vesta. Icarus 244, pp. 133 - 157 (2014)
Schäfer, M.; Nathues, A.; Williams, D. A.; Mittlefehldt, D. W.; Le Corre, L.; Buczkowski, D. L.; Kneissl, T.; Thangjam, G. S.; Hoffmann, M.; Schmedemann, N.et al.; Schäfer, T.; Scully, J. E. C.; Li, J.-Y.; Reddy, V.; Garry, W. B.; Krohn, K.; Yingst, R. A.; Gaskell, R. W.; Russell, C. T.: Imprint of the Rheasilvia impact on Vesta - Geologic mapping of quadrangles Gegania and Lucaria. Icarus 244, pp. 60 - 73 (2014)
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).