Luo, H.; Kronberg, E. A.; Grigorenko, E. E.; Fränz, M.; Daly, P. W.; Chen, G. X.; Du, A. M.; Kistler, L. M.; Wei, Y.: Evidence of strong energetic ion acceleration in the near-Earth magnetotail. Geophysical Research Letters 41, pp. 3724 - 3730 (2014)
Dubinin, E.; Fraenz, M.; Woch, J.; Zhang, T.-L.; Wei, Y.; Fedorov, A.; Barabash, S.; R., L.: Toroidal and poloidal magnetic fields at Venus. Venus Express observations. Planetary and Space Science 87, pp. 19 - 29 (2013)
Dubinin, E.; Fraenz, M.; Zhang, T.-L.; Woch, J.; Wei, Y.; Fedorov, A.; Barabash, S.; R., L.: Plasma in the Near Venus Tail - Venus Express Observations. Journal Geophysical Research 118, pp. 7624 - 7634 (2013)
Li, K.; Haaland, S.; Eriksson, A.; André, M.; Engwall, E.; Wei, Y.; Kronberg, E. A.; Fränz, M.; Daly, P. W.; Zhao, H.et al.; Ren, Q. Y.: Transport of cold ions from the polar ionosphere to the plasma sheet. Journal Geophysical Research 118, pp. 5467 - 5477 (2013)
Wei, Y.; Fränz, M.; Dubinin, E.; He, M.; Ren, Z.; Zhao, B.; Liu, J.; Wan, W.; Yumoto, K.; Watari, S.et al.; Alex, S.: Can a nightside geomagnetic Delta H observed at the equator manifest a penetration electric field? Journal Geophysical Research 118 (6), pp. 3557 - 3567 (2013)
Yao, Z. H.; Angelopoulos, V.; Pu, Z. Y.; Fu, S. Y.; Kubyshkina, M.; Liu, J.; Chu, X. N.; Nishimura, T.; Cao, X.; Du, A. M.et al.; Yue, C.; Shi, Q. Q.; Wei, Y.: Conjugate observations of flow diversion in the magnetotail and auroral arc extension in the ionosphere. Journal Geophysical Research 118 (8), pp. 4811 - 4816 (2013)
Feng, L.; Inhester, B.; Wei, Y.; Gan, W. Q.; Zhang, T. L.; Wang, M. Y.: Morphological Evolution of a Three-Dimensional Coronal Mass Ejection Cloud Reconstructed from Three Viewpoints. Astrophysical Journal 751 (1), 18 (2012)
Liu, J.; Liu, L.; Zhao, B.; Wei, Y.; Hu, L.; Xiong, B.: High-speed stream impacts on the equatorial ionization anomaly region during the deep solar minimum year 2008. Journal Geophysical Research 117, A10304 (2012)
Wei, Y.; Fraenz, M.; Dubinin, E.; Coates, A. J.; Zhang, T. L.; Wan, W.; Feng, L.; Angsmann, A.; Opitz, A.; Woch, J.et al.; Barabash, S.; Lundin, R.: A teardrop-shaped ionosphere at Venus in tenuous solar wind. Planetary and Space Science 73, pp. 254 - 261 (2012)
Wei, Y.; Fraenz, M.; Dubinin, E.; Woch, J.; Lühr, H.; Wan, W.; Zong, Q.-G.; Zhang, T. L.; Pu, Z. Y.; Fu, S. Y.et al.; Barabash, S.; Lundin, R.; Dandouras, I.: Enhanced atmospheric oxygen outflow on Earth and Mars driven by a corotating interaction region. Journal Geophysical Research 117, A03208 (2012)
Wei, Y.; Wan, W.; Zhao, B.; Hong, M.; Ridley, A.; Ren, Z.; Fraenz, M.; Dubinin, E.; He, M.: Solar wind density controlling penetration electric field at the equatorial ionosphere during a saturation of cross polar cap potential. Journal Geophysical Research 117, A09308 (2012)
Zhao, B.; Wan, W.; Lei, J.; Wei, Y.; Sahai, Y.; Reinisch, B.: Positive ionospheric storm effects at Latin America longitude during the superstorm of 20-22 November 2003: revisit. Annales Geophysicae 30 (5), pp. 831 - 840 (2012)
He, M.; Liu, L.; Wan, W.; Wei, Y.: Strong evidence for couplings between the ionospheric wave-4 structure and atmospheric tides. Geophysical Research Letters 38, L14101 (2011)
Dubinin, E.; Fraenz, M.; Zhang, T.-L.; Woch, J.; Wei, Y.: Ionospheric magnetic fields and currents at Venus and Mars. European Geosciences Union General Assembly 2014, Vienna, Austria (2014)
Dubinin, E.; Fraenz, M.; Zhang, T.-L.; Woch, J.; Wei, Y.: Ionospheric magnetic fields at Venus and Mars and their effect on plasma flow in the near planet wakes. EPSC, Estoril, Portugal (2014)
Dubinin, E.; Fraenz, M.; Zhang, T.-L.; Woch, J.; Wei, Y.; Barabash, S.: Asymmetrical response of the ionospheric magnetization and the plasma sheet formation on the IMF orientation. 6th Alfven Conference: Plasma Interactions with Solar System Objects anticipating Rosetta, MAVEN and Mars Orbiter Mission, London, UK (2014)
Wei, Y.; Fränz, M.; Dubinin, E.; Wan, W.; Jarvinen, R.; Zhang, T.-L.; Barabash, S.; Lundin, R.: Ablation of Venusian oxygen ions by unshocked solar wind. 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.
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).