Mishin, V. M.; Bazarzhapov, A. D.; Saifudinova, T. I.; Lunyushkin, S. B.; Shirapov, D. S.; Woch, J.; Eliasson, L.; Opgenoorth, H.; Murphree, J. S.: Different methods to determine the polar cap area. J. Geomagn. Geoelectr. (1992)
Potemra, T. A.; Erlandson, R. E.; Zanetti, L. J.; Arnoldy, R. L.; Woch, J.; Friis-Christensen, E.: The dynamic cusp. Journal Geophysical Research 97, p. 2835 (1992)
Woch, J.; Lundin, R.: Magnetosheath plasma precipitation in the polar cusp and its control by the interplanetary magnetic field. Journal Geophysical Research 97, p. 1421 (1992)
Lundin, R.; Sandahl, I.; Woch, J.; Elphinstone, R.: The contribution of the boundary layer EMF to magnetospheric substorms, in magnetospheric substorms. Geophysical Monograph, p. 355 (1991)
Woch, J.; Kremser, G.; Korth, A.: A comprehensive investigation of compressional ULF waves observed in the ring current. Journal Geophysical Research 95, p. 15113 (1990)
Woch, J.; Kremser, G.; Korth, A.; Pokhotelov, O. A.; Pilipenko, V. A.; Nezlina, Y. M.; Amata, E.: Curvature driven drift mirror instability in the magnetosphere. Planetary and Space Science 36, p. 363 (1988)
Tanskanen, P.; Kangas, J.; Block, L.; Kremser, G.; Korth, A.; Woch, J.; Iversen, I. B.; Torkar, K. M.; Riedler, W.; Ullaland, S.et al.; Stadnes, J.; Glassmeier, K.-H.: Different phases of a magnetospheric substorm on June 23, 1979. Journal Geophysical Research 92, p. 7443 (1987)
Pokhotelov, O. A.; Pilipenko, V. A.; Nezlina, Y. M.; Woch, J.; Kremser, G.; Korth, A.; Amata, E.: Excitation of high-beta instabilities at geostationary orbit: theory and observation. Planetary and Space Science 34, p. 695 (1986)
Khurana, K. K.; Vasyliūnas, V. M.; Mauk, B. H.; Frank, L.; Paterson, B.; Kivelson, M. G.; Krupp, N.; Woch, J.; Lagg, A.; Kurth, B.: 24 - The configuration of Jupiter's magnetosphere. In: Jupiter: The Planet, Satellites and Magnetosphere, pp. 593 - 616 (Eds. Bagenal, F.; Dowling, T.; McKinnon, W.). Cambridge University Press (2004)
Krupp, N.; Vasyliūnas, V. M.; Woch, J.; Lagg, A.; Khurana, K. K.; Kivelson, M. G.; Mauk, B. H.; Roelof, E. C.; Williams, D. J.; Krimigis, S. M.et al.; Kurth, W. S.; Frank, L. A.; Paterson, W. R.: 25 - The Dynamics of the Jovian magnetosphere. In: Jupiter: The Planet, Satellites and Magnetosphere, pp. 617 - 638 (Eds. Bagenal, F.; Dowling, T.; McKinnon, W.). Cambridge University Press (2004)
Keppler, E.; Fränz, M.; Korth, A.; Krupp, N.; Reuss, M. K.; Seidel, R.; Wilken, B.; Witte, M.; Woch, J.: Ulysses in hohen heliographischen Breiten: Eine Übersicht über die mit am MPAe entwickelten Messinstrumenten erzielten Ergebnisse. In: Max-Planck-Gesellschaft Jahrbuch, p. 336. Max-Planck-Gesellschaft, München (1995)
Albert, K.; Hirzberger, J.; Busse, D.; Blanco Rodriguez, J.; Castellanos Durán, J. S.; Cobos Carrascosa, J. P.; Fiethe, B.; Gandorfer, A. M.; Guan, Y.; Kolleck, M.et al.; Lagg, A.; Lange, .; Michalik, H.; Solanki, S. K.; Iniesta, J. C. D. T.; Woch, J.: Performance Analysis of the SO/PHI Software Framework for On-board Data Reduction. In: Astronomical Data Analysis Software and Systems XXVIII, Vol. 523, pp. 151 - 154 (Eds. Teuben, P. J.; Pound, M. W.; Thomas, B. A.; Warner, E. M.). Astronomical Society of the Pacific, San Francisco (2019)
Albert, K.; Hirzberger, J.; Busse, D.; Lange, T.; Kolleck, M.; Fiethe, B.; Suárez, D. O.; Woch, J.; Schou, J.; Rodriguez, J. B.et al.; Gandorfer, A. M.; Guan, Y.; Carrascosa, J. P. C.; Expósito, D. H.; Iniesta, J. C. d. T.; Solanki, S. K.; Michalik, H.: Autonomous on-board data processing and instrument calibration software for the SO/PHI. In: Proceedings Software and Cyberinfrastructure for Astronomy V, Vol. 10707, 107070O. SPIE Astronomical Telescopes + Instrumentation 2018, Austin, Texas, USA. (2018)
Gandorfer, A. M.; Grauf, B.; Staub, J.; Bischoff, J.; Woch, J.; Hirzberger, J.; Solanki, S. K.; Álvarez-Herrero, A.; Parejo, P. G.; Schmidt, W.et al.; Volkmer, R.; Appourchaux, T.; Iniesta, J. C. d. T.: The High Resolution Telescope (HRT) of the Polarimetric and Helioseismic Imager (PHI) onboard Solar Orbiter. In: Proc. SPIE 10698, Space Telescopes and Instrumentation 2018: Optical, Infrared, and Millimeter Wave, 106984N (Eds. Lystrup, M.; MacEwen, H. A.; Fazio, G. G.; Batalha, N.; Siegler, N. et al.). (2018)
Hernández Expósito, D.; Cobos Carrascosa, J. P.; Ramos Mas, J. L.; Rodríguez Valido, M.; Orozco Suárez, D.; Hirzberger, J.; Woch, J.; Solanki, S. K.; del Toro Iniesta, J. C.: Image compression on reconfigurable FPGA for the SO/PHI space instrument. In: Proceedings Volume 10707, Software and Cyberinfrastructure for Astronomy V, 107072F (Eds. Guzman, J. C.; Ibsen, J.). (2018)
Piqueras-Meseguer, J.-J.; Heerlein, K.; Werner, S.; Enge, R.; Schühle, U.; Woch, J.; Ridder, T. D.; Meynants, G.; Wolfs, B.: CMOS sensor and camera for the PHI instrument onboard the Solar Orbiter Mission: evaluation of the radiation tolerance. In: High Energy, Optical, and Infrared Detectors for Astronomy V, 845314. (2012)
Analyzing the high spatial resolution solar Ca II H and K emission data obtained by the SUNRISE mission and building a model of other stars more active than the Sun
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).
First Light for Sunrise III: the first tests with real sunlight were successful. The balloon-borne solar observatory should be ready for launch at the end of May.