By Bruce T. Tsurutani, Robert G. Stone
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Published by way of the yankee Geophysical Union as a part of the Geophysical Monograph Series.
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Extra resources for Collisionless Shocks in the Heliosphere: Reviews of Current Research
The morphological and statistical properties of solar X-ray events with long decay times, Astrophys. , 214, 891, 1977. Kahler, S. , The role of the big flare syndrome in correlations of solar energetic proton fluxes and associated microwave burst parameters, J. , 87, 3439, 1982a. Kahler, S. , Radio burst characteristics of solar proton flares, Astrophys. , 261, 710, 1982b. , E. Hildner, and M. A. I. Van Hollebeke, Prompt solar proton events and coronal mass ejections, Sol. , 57, 429, 1978. Kahler, S.
Smith, D. , and N. A. Krall, The impossibility of plasma radiation from electron plasma wave turbulence within collisionless shock waves, Astrophys. , 194, L163, 1974. Smith, E. , Observations of interplanetary shocks: Recent progress, Space Sci. , 34, 101, 1983. Smith, S. , and K. L. Harvey, Observational effects of flare-associated waves, in Physics of the Solar Corona, edited by D. J. Macris, pp. 156-167, D. , 1971. Stewart, R. , Source heights of meter wavelength bursts of spectral type I and III, Sol.
H. LUTTRELL, 2 E. MARSCH,AND R. SCHWENN Max-Planck-Institut fa'r Aeronomie, 3411 Katlenburg-Lindau, Federal Republic of Germany A review of the more recent observations regarding interplanetary shock waves and shock-related phenomena near and within I AU is presented. In particular, the observations of interplanetary fast mode shocks are summarized in terms of their solar and interplanetary origin, of their observed characteristics with respect to the solar cycle, the solar wind stream-structure, and the heliocentric radial distance, and in terms of their three-dimensional propagation properties in the inner part of the heliosphere.
Collisionless Shocks in the Heliosphere: Reviews of Current Research by Bruce T. Tsurutani, Robert G. Stone