Dubinin, E.; Fraenz, M.; Pätzold, M.; Tellmann, S.; DiBraccio, G.; McFadden, J.: The Mini Induced Magnetospheres at Mars. Geophysical Research Letters 50, p. e2022GL102324 (2023)
Dubinin, E.; Fraenz, M.; Pätzold, M.; Tellmann, S.; Modolo, R.; DiBraccio, G.; McFadden, J.; Espley, J.: Magnetic Fields and Plasma Motions in a Hybrid Martian Magnetosphere. Journal of Geophysical Research (Space Physics) 128, p. e2022JA030575 (2023)
Franco., A. M. S.; Echer, E.; Fränz, M.; Bolzan, M.: ULF Waves Propagating Through the Martian Magnetosheath into the Ionosphere: A Statistical Study Using Mars Express Observations. Brazilian Journal of Physics 14 (2023)
Li, X. Z.; Rong, J.; Fränz, M.; Zhang, C.; Klinger, L.; Shi, J.; Gao, J. W.; Dunlop, M.W.; Wei, Y.: Two Types of Martian Magnetotail Current Sheets: MAVEN Observations of Ion Composition. Geophysical Research Letters 50 (2) (2023)
Barabash, S.; Fedorov, A.; Sauvaud, J. J.; Lundin, R.; Russell, C. T.; Futaana, Y.; Zhang, T. L.; Andersson, H.; Brinkfeldt, K.; Grigoriev, A.et al.; Holmström, M.; Yamauchi, M.; Asamura, K.; Baumjohann, W.; Lammer, H.; Coates, A. J.; Kataria, D. O.; Linder, D. R.; Curtis, C. C.; Hsieh, K. C.; Sandel, B. R.; Grande, M.; Gunell, H.; Koskinen, H. E. J.; Kallio, E.; Riihelä, P.; Säles, T.; Schmidt, W.; Kozyra, J.; Krupp, N.; Fränz, M.; Woch, J.; Luhmann, J.; McKenna-Lawlor, S.; Mazelle, C.; Thocaven, J. -.; Orsini, S.; Cerulli-Irelli, R.; Mura, A.; Milillo, A.; Maggi, M.; Roelof, E.; Brandt, P.; Szego, K.; Winningham, J. D.; Frahm, R. A.; Scherrer, J.; Sharber, J. R.; Wurz, P.; Bochsler, P.: Author Correction: The loss of ions from Venus through the plasma wake. Nature 605, p. E10 - E10 (2022)
Franco, A. M. S.; Echer, E.; Bolzan, M. J. A.; Fraenz, M.: Study of Mars Magnetosheath Fluctuations using the Kurtosis Technique: Mars Express Observations. Earth and Planetary Physics 6, p. 28 (2022)
Franco, A. M. S.; Echer, E.; Bolzan, M. J. A.; Fränz, M.: Study of fluctuations in the Martian magnetosheath using a kurtosis technique: Mars Express observations. Earth and Planetary Physics 6 (1), pp. 28 - 41 (2022)
de Oliveira Martins, I.; Fränz, M.; Echer, E.; Franco, A.: Advection of Martian Crustal Magnetic Fields by Ionospheric Plasma Flow Observed by the MAVEN Spacecraft. Journal of Geophysical Research: Space Physics 126 (9), e2021JA029242 (2021)
Dubinin, E. M.; Fränz, M.; Modolo, R.; Pätzold, M.; Tellmann, S.; Vaisberg, O.; Shuvalov, S.; Zelenyi, L.; Chai, L.; Wei, Y.et al.; McFadden, J.; DiBraccio, G.; Espley, J.: Induced Magnetic Fields and Plasma Motions in the Inner Part of the Martian Magnetosphere. Journal of Geophysical Research: Space Physics 126 (12), e2021JA029542 (2021)
Dubinin, E. M.; Fränz, M.; Pätzold, M.; Tellmann, S.; Woch, J.; McFadden, J.; Zelenyi, L.: Bursty Ion Escape Fluxes at Mars. Journal of Geophysical Research: Space Physics 126 (4), e2020JA028920 (2021)
Maes, L.; Fränz, M.; McFadden, J. P.; Benna, M.: Escape of CO2+ and Other Heavy Minor Ions From the Ionosphere of Mars. Journal of Geophysical Research: Space Physics 126 (1), e2020JA028608 (2021)
Dubinin, E. M.; Fränz, M.; Pätzold, M.; Woch, J.; McFadden, J.; Fan, K.; Wei, Y.; Tsareva, O.; Zelenyi, L.: Impact of Martian crustal magnetic field on the ion escape. Journal of Geophysical Research: Space Physics, e2020JA028010 (2020)
Fan, K.; Fränz, M.; Wei, Y.; Cui, J.; Rong, Z.; Chai, L.; Dubinin, E. M.: Deflection of Global Ion Flow by the Martian Crustal Magnetic Fields. The Astrophysical Journal Letters 898 (2), L54 (2020)
Franco, A.M.S.; Fränz, M.; Echer, E.; Bolzan, M.J.A.: Wavelet analysis of low frequency plasma oscillations in the magnetosheath of Mars. Advances in Space Research 65 (9), pp. 2090 - 2098 (2020)
Application deadline 1 October 2023. PhD projects in planetary science, solar and stellar physics, solar magnetism, heliophysics, helioseismology, asteroseismology, ...
ESA's space probe is on the move: First it heads for the launch site in Kourou - and in April it will begin its long journey to Jupiter and its icy moons.
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.
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).
Call for applications: PhD positions in planetary science, solar physics, stellar physics, with a starting date in September 2023, at the IMPRS in Göttingen.
Application deadline 1 November 2022. PhD projects in planetary science, solar and stellar physics, solar magnetism, heliophysics, helioseismology, asteroseismology, ...