Chen, Y.-T.; Lin, H. W.; Holman, M. J.; Payne, M. J.; Fraser, W. C.; Lacerda, P.; Ip, W.-H.; Chen, W.-P.; Kudritzki, R.-P.; Jedicke, R.et al.; Wainscoat, R. J.; Tonry, J. L.; Magnier, E. A.; Waters, C.; Kaiser, N.; Wang, S.-Y.; Lehner, M.: Discovery of a New Retrograde Trans-Neptunian Object: Hint of a Common Orbital Plane for Low Semimajor Axis, High-Inclination TNOs and Centaurs. Astrophysical Journal 827 (2), L24 (2016)
Lorek, S.; Gundlach, B.; Lacerda, P.; Blum, J.: Comet formation in collapsing pebble clouds. What cometary bulk density implies for the cloud mass and dust-to-ice ratio. Astronomy and Astrophysics 587, A128 (2016)
Muntean, E. A.; Lacerda, P.; Field, T. A.; Fitzsimmons, A.; Fraser, W. C.; Hunniford, A. C.; McCullough, R. W.: A laboratory study of water ice erosion by low-energy ions. Mon. Not. Roy. Astron. Soc. 462 (3), pp. 3361 - 3367 (2016)
Pfalzner, S.; Davies, M. B.; Gounelle, M.; Johansen, A.; Muenker, C.; Lacerda, P.; Zwart, S. P.; Testi, L.; Trieloff, M.; Veras, D.: The formation of the solar system. Physica Scripta 90 (6), 068001 (2015)
Hsieh, H. H.; Denneau, L.; Fitzimmons, A.; Hainaut, O. R.; Ishiguro, M.; Jedicke, R.; Kaluna, H. M.; Keane, J. V.; Kleyna, J.; Lacerda, P.et al.; MacLennan, E. M.; Meech, K. J.; Moskovitz, N. A.; Riesen, T.; Schunova, E.; Snodgrass, C.; Trujillo, C. A.; Urban, L.; Veres, P.; Wainscoat, R. J.; Yang, B.: Search for the Return of Activity in Active Asteroid 176P/Linear. Astronomical Journal 147 (4), 89 (2014)
Lorek, S.; Lacerda, P.; Gundlach, B.; Blum, J.: Compaction of ice pebbles in collapsing pebble clouds and the dust-to-ice ratio of comets. European Planetary Science Congress 2015, Nantes, France (2015)
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).