Tu, C.-Y.; Marsch, E.: Comment on ``Evolution of energy-containing turbulent eddies in the solar wind'' by W. H. Matthaeus, S. Oughton, Pontius, Jr., D. H. and Y. Zhou. Journal Geophysical Research 100, pp. 12323 - 12328 (1995)
Wilhelm, K.; Curdt, W.; Marsch, E.; Schühle, U.; Lemaire, P.; Gabriel, A.; Vial, J.-C.; Grewing, M.; Huber, M. C. E.; Jordan, S. D.et al.; Poland, A. I.; Thomas, R. J.; Kühne, M.; Timothy, J. G.; Hassler, D. M.; Siegmund, O. H. W.: SUMER-Solar ultraviolet measurements of emitted radiation. Solar Physics 162, pp. 189 - 231 (1995)
LaBelle, J.; Treumann, R. A.; Marsch, E.: Elsässer variable analysis of fluctuations in the ion foreshock and undisturbed solar wind. Journal Geophysical Research 99 (A1), pp. 65 - 71 (1994)
Marsch, E.; Liu, S.: Structure functions and intermittency of velocity fluctuations in the inner solar wind. Annales Geophysicae 11, pp. 227 - 238 (1993)
Marsch, E.; Tu, C.-Y.: Modelling results on spatial transport and spectral transfer of solar wind Alfvénic turbulence. Journal Geophysical Research 98, pp. 21045 - 21059 (1993)
Marsch, E.; Tu, C.-Y.: Correlations between the fluctuations of pressure, density, temperature and magnetic field in the solar wind. Annales Geophysicae 11, pp. 659 - 677 (1993)
McKenzie, J. F.; Marsch, E.; Baumgärtel, K.; Sauer, K.: Wave and stability properties of multi-ion plasmas with application to winds and flows. Annales Geophysicae 11, pp. 341 - 353 (1993)
Tu, C.-Y.; Marsch, E.: A model of solar wind fluctuations with two components: Alfvén waves and convective structures. Journal Geophysical Research 98, pp. 1257 - 1276 (1993)
Grappin, R.; Mangeney, A.; Marsch, E.: On the origin of solar wind MHD turbulence: Helios data revisited. Journal Geophysical Research 95, pp. 8197 - 8209 (1990)
Marsch, E.; Tu, C.-Y.: Spectral and spatial evolution of compressible turbulence in the inner solar wind. Journal Geophysical Research 95, pp. 11945 - 11956 (1990)
Rosenbauer, H.; Shutte, N.; Apathy, I.; Verigin, M.; Witte, M.; Galeev, A.; Gringauz, K.; Grünwaldt, H.; Jockers, K.; Kiraly, P.et al.; Kotova, G.; Livi, S.; Marsch, E.; Remizov, A.; Richter, A.; Riedler, W.; Szego, K.; Hemmerich, P.; Schwenn, R.; Schwingenschuh, K.; Steller, M.: First meansurements of ions of Martian origin and observation of a plasma layer in the magnetosphere of Mars: the TAUS experiment on the spacecraft PHOBOS 2. Sov. Astron. Letter 16, pp. 156 - 160 (1990)
Rosenbauer, H.; Shutte, N.; Apathy, I.; Verigin, M.; Witte, M.; Galeev, A.; Gringauz, K.; Grünwaldt, H.; Jockers, K.; Kiraly, P.et al.; Kotova, G.; Livi, S.; Marsch, E.; Remizov, A.; Richter, A.; Riedler, W.; Szego, K.; Hemmerich, P.; Schwenn, R.; Schwingenschuh, K.; Steller, M.: Evidence of a plasmasheet in the Martian magnetotail based on the TAUS experiment data from the `Phobos-2' spacecraft. Pis'ma v Astronomicheskie Zhurnal 16, pp. 368 - 377 (1990)
Thieme, K. M.; Marsch, E.; Schwenn, R.: Spatial structures in high-speed streams as signatures of fine structures in coronal holes. Annales Geophysicae 8 (11), pp. 713 - 724 (1990)
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).