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Displaying results 2501 to 2510 of 5271.
  • Publications
    Ion-scale sideband waves and filament formation: Alfvénic impact on heliospheric plasma turbulence

    Narita, Y., & Motschmann, W. (2017). Ion-scale sideband waves and filament formation: Alfvénic impact on heliospheric plasma turbulence. Frontiers in Physics, 5, 8. https://doi.org/10.3389/fphy.2017.00008

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  • Publications
    Review article: Wave analysis methods for space plasma experiment

    Narita, Y. (2017). Review article: Wave analysis methods for space plasma experiment. Nonlinear Processes in Geophysics, 24, 203-214. https://doi.org/10.5194/npg-24-203-2017

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  • Publications
    Long-term vacuun tests of single-mode vertical cavity surface emitting laser diodes used for a scalar magnetometer

    Hagen, C., Ellmeier, M., Piris, J., Lammegger, R., Jernej, I., Magnes, W., Murphy, E., Pollinger, A., Erd, C., Baumjohann, W., Sodnik, Z. (Ed.), Cugny, B. (Ed.), & Karafolas, N. (Ed.) (2017). Long-term vacuun tests of single-mode vertical cavity surface emitting laser diodes used for a scalar magnetometer. In Proceedings Volume 10563, International Conference on Space Optics - ICSO 2014 (pp. 105634Y). SPIE. https://doi.org/10.1117/12.2304073

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  • Publications
    Study on plasma blob to result in radio signal scintillations in low latitude ionosphere

    Shi, J., Wang, Z., Torkar, K., Zherebtsov, G., Ratovsky, K., & Nomanova, E. (2017). Study on plasma blob to result in radio signal scintillations in low latitude ionosphere. In Proceedings of the 2017 Progress In Electromagnetics Research Symposium - Spring (PIERS) (pp. 2004-2007). Institute of Electrical and Electronics Engineers. https://doi.org/10.1109/PIERS.2017.8262079

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  • Publications
    CUTE: The Colorado Ultraviolet Transit Experiment

    Fossati, L., France, K., Fleming, B., Koskinen, T., Vidotto, A., Beasley, M., Desert, J., Hoadley, K., Kohnert, R., Nell, N., & Petit, P. (2017). CUTE: The Colorado Ultraviolet Transit Experiment. In Proceedings of the Second BRITE-Constellation Science Conference - 'Small Satellites - Big Science' (pp. 73-75). Polish Astronomical Society.

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  • Publications
    Short antennas on a large spacecraft

    Fischer, G., Cecconi, B., Bergman, J., Girard, J., Quinsac, G., Wahlund, J., Fischer, G. (Ed.), Mann, G. (Ed.), Panchenko, M. (Ed.), & Zarka, P. (Ed.) (2017). Short antennas on a large spacecraft. In Planetary Radio Emissions VIII. Proceedings of the 8th International Workshop on Planetary, Solar and Heliospheric Radio Emissions (pp. 515-523). Austrian Academy of Sciences Press.

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  • Publications
    Hunting for stellar Coronal Mass Ejections

    Korhonen, H., Vida, K., Leitzinger, M., Odert, P., Kovacs, O., Nandy, D. (Ed.), & Petit, P. (Ed.) (2017). Hunting for stellar Coronal Mass Ejections. In Living around Active Stars (IAU S328). Proceedings of the International Astronomical Union Symposia and Colloquia (pp. 198-203). Cambridge University Pres.

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  • Publications
    “Zipper-like” periodic magnetosonic waves: Van Allen Probes, THEMIS, and magnetospheric multiscale observations

    Li, J., Bortnik, J., Li, W., Ma, Q., Thorne, R., Kletzing, C., Kurth, W., Hospodarsky, G., Wygant, J., Breneman, A., Thaller, S., Funsten, H., Mitchel, D., Manweiler, J., Torbert, R., Contel, O., Ergun, R., Lindqvist, P., Torkar, K., ... Russell, C. (2017). “Zipper-like” periodic magnetosonic waves: Van Allen Probes, THEMIS, and magnetospheric multiscale observations. Journal of Geophysical Research, 122, 1600-1610. https://doi.org/10.1002/2016JA023536

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  • Publications
    B field in OB stars (BOB): The outstandingly strong magnetic field in the evolved He-strong star CPD-62° 2124

    Castro, N., Fossati, L., Hubrig, S., Järvinen, S., Przybilla, N., Nieva, M., Ilyin, I., Carroll, T., Schöller, M., Langer, N., Schneider, F., Morel, T., & Butler, K. (2017). B field in OB stars (BOB): The outstandingly strong magnetic field in the evolved He-strong star CPD-62° 2124. Astronomy and Astrophysics, 597, L6. https://doi.org/10.1051/0004-6361/201629751

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  • Publications
    Evolution of a typical ion-scale magnetic flux rope caused by thermal pressure enhancement

    Teh, W., Nakamura, T., Nakamura, R., Baumjohann, W., Russell, C., Pollock, C., Lindqvist, P., Ergun, R., Burch, J., Torbert, R., & Giles, B. (2017). Evolution of a typical ion-scale magnetic flux rope caused by thermal pressure enhancement. Journal of Geophysical Research, 122, 2040-2050. https://doi.org/10.1002/2016JA023777

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