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Origin and Acceleration of Fast and Slow Solar Wind

Published online by Cambridge University Press:  26 May 2016

Giannina Poletto*
Affiliation:
INAF —- Arcetri Astrophysical Observatory, Largo Fermi, 5, 50125 Firenze, Italy

Abstract

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Before the advent of the Solar and Heliospheric Observatory (SOHO, launched in 1995), we had little information on how coronal plasma gets accelerated to the high speed measured in situ. The Ultraviolet Coronagraph Spectrometer (UVCS) on SOHO, acquiring UV data over the first few solar radii, a region unexplored in this spectral range, allowed us to build a profile of the outflow plasma speed vs. heliocentric distance, based on empirical constraints. Still, much has to be learnt about the behavior of solar wind in the extended corona. In the following, after briefly reviewing the general properties of the solar wind, I'll focus on controversial issues — like the identification of the sources of fast and slow wind, and the acceleration of fast vs. slow wind streams — and I'll illustrate recent contributions to the solution of these problems.

Type
Part 11: Open Magnetic Structures and Winds
Copyright
Copyright © Astronomical Society of the Pacific 2004 

References

Aellig, M. R., Hefti, S., Grünwaldt, H., Bochsler, P., Wurz, P., Ipavich, F. M., & Hovestadt, D. 1999, J. Geophys. Res., 104, 24769.Google Scholar
Antonucci, E., Dodero, M. A., & Giordano, S. 2000, Solar Phys., 197, 115.Google Scholar
Beckers, J. M., & Chipman, E. 1974, Solar Phys., 34, 151.Google Scholar
Bemporad, A., Poletto, G., Suess, S. T., Ko, Y.-K., Parenti, S., Riley, P., Romoli, M., & Zurbuchen, T. Z. 2003, ApJ, 593, 1146.Google Scholar
Buchlin, E. & Hassler, D. M. 2000, BAAS, 32, 810.Google Scholar
Cranmer, S. R., Kohl, J. L., Noci, G. and 28 co-authors 1999, ApJ, 511, 481.CrossRefGoogle Scholar
Casalbuoni, S., DelZanna, L., Habbal, S. R., & Velli, M. 1999, J. Geophys. Res., 104, 9947.Google Scholar
Cranmer, S. R., & van Ballegooijen, A.A. 2003, ApJ, 594, in press.Google Scholar
David, C., Gabriel, A. H., Bely-Dubau, F., Fludra, A., Lemaire, P., & Wilhelm, K. 1998, A&A, 336, L90.Google Scholar
DeForest, C. E., Hoeksema, J. T., Gurman, J. B., Thompson, B. J., Plunkett, S. P., Howard, R., Harrison, R.C., & Hassler, D. M., 1997, Solar Phys. 175, 393.CrossRefGoogle Scholar
DeForest, C. E., Plunkett, S. P, & Andrews, M. D. 2001, ApJ, 546, 569.Google Scholar
DelZanna, L., Hood, A. W., & Longbottom, A. W. 1997, A&A, 318, 963.Google Scholar
DelZanna, L., & Bromage, B. J. I. 1999, J. Geophys. Res., 104, 9753.Google Scholar
Einaudi, G., Chibbaro, S., Dahlburg, R. B., & Velli, M. 2001, ApJ, 547, 1167.Google Scholar
Fisk, L. A. 1996, J. Geophys. Res., 101, 15547.Google Scholar
Fisk, L. A., Schwadron, N. A., & Zurbuchen, T. H. 1998, Space Sci. Rev., 86, 51.Google Scholar
Gabriel, A., Bely-Dubau, F., & Lemaire, P. 2003, ApJ, 589, 623.Google Scholar
Giordano, S., Antonucci, E., Noci, G., Romoli, M., & Kohl, J. L. 2000, ApJ, 531, L79.Google Scholar
Gosling, J. T. in AIP Conf. Proc., 385, Robotic Exploration close to the Sun: Scientific Basis, ed. Habbal, S. R. (New York: AIP), 17.Google Scholar
Grall, R. R., Coles, W. A., Klingelsmith, M. T., Breen, A., Williams, P. J., Markkanen, J., & Esser, R. 1996, Nature, 379, 429.Google Scholar
Habbal, S. R., Esser, R., Guhathakurta, M., Sittler, E. C., & Fisher, R. R. 1995, Geophys. Res. Lett., 22, 1465.CrossRefGoogle Scholar
Hefti, S., Grünwaldt, H., Bochsler, P., & Aellig, M. R. 2000, J. Geophys. Res., 105, 10527.Google Scholar
Hollweg, J. V. 1986, J. Geophys. Res., 91, 4111.Google Scholar
Hyder, C. L., & Lites, B. W. 1970, Solar Phys., 14, 147.Google Scholar
Hu, Y. Q., Esser, R., & Habbal, S. R. 2000, J. Geophys. Res., 105, 5093.Google Scholar
Kohl, J. L., Noci, G., Antonucci, E. & 23 co-authors 1997, Solar Phys., 175, 613.Google Scholar
Kojima, M., Fujiki, K., Ohmi, T., Tokamura, M., Yokobe, A., & Hakamada, K. 1999, J. Geophys. Res., 104, 16993.Google Scholar
Koutchmy, S. 1977, Solar Phys., 51, 399.Google Scholar
Krieger, A. S., Timothy, A. F., & Roelof, E. C. 1973, Solar Phys., 26, 343.Google Scholar
Liewer, P. C., Hall, J. R., De Jong, E., & 6 co-authors 2001, J. Geophys. Res., 106, 15903.Google Scholar
McComas, D. J., Elliott, H. A., Schwadron, N. A., Gosling, J. T., Skoug, R. M., & Goldstein, B. E. 2003, Geophys. Res. Lett., 30, 24.Google Scholar
McKenzie, J. F., Banaszkievicz, M., & Axford, W. I. 1995, A&A, 303, L45.Google Scholar
Miralles, M. P., Cranmer, S. R., Panasyuk, A. V., Romoli, M., & Kohl, J. L. 2001, ApJ, 549, L257.CrossRefGoogle Scholar
Miralles, M. P., Cranmer, S. R., & Kohl, J. L. 2002, in AGU Fall Meeting, abstract SH52A-0451.Google Scholar
Neugebauer, M., Forsyth, R. J., Galvin, A. B. & 10 co-authors 1998, J. Geophys. Res., 103, 14587.Google Scholar
Neugebauer, M., Liewer, P. C., Smith, E. J., Skoug, R. M., & Zurbuchen, T. H. 2002, J. Geophys. Res., 107, SSH 131.Google Scholar
Noci, G. 1973, Solar Phys., 29, 505.Google Scholar
Noci, G., Kohl, J. L., & Withbroe, G. L. 1987, ApJ, 315, 706.Google Scholar
Noci, G., Kohl, J. L., Antonucci, E., & 21 co-authors 1997, in ESA SP-404, The Corona and Solar Wind near Minimum Activity, Noordwijk: ESA Publications Division, ed. Wilson, A., 75.Google Scholar
Noci, G., Kohl, J. L., Antonucci, E., & 20 co-authors 1997, Adv. Sp. Res., 20, 2219.Google Scholar
Ofman, L. 2000, Geophys. Res. Lett., 27, 2885.Google Scholar
Orrall, F. Q., Rottman, G.J., & Klimchuk, J. A. 1983, ApJ, 266, L65.Google Scholar
Patsourakos, S., & Vial, J.-C. 2000, A&A, 341, 275.Google Scholar
Phillips, J. L., Bame, S. J., Barnes, A., & 8 co-authors 1995, J. Geophys. Res., 22, 3301.Google Scholar
Poletto, G., Suess, S. T., Biesecker, D. A., Esser, R., Gloeckler, G., Ko, Y.-K., & Zurbuchen, T. H. 2002, J. Geophys. Res., 107, SSH 91.Google Scholar
Raymond, J. C., Kohl, J. L., Noci, G., & 24 co-authors 1997, Solar Phys. 175, 645.Google Scholar
Schwadron, N. A., Fisk, L. A., & Zurbuchen, T. H. 1999, ApJ, 521, 859.Google Scholar
Sheeley, N. R., Wang, Y.-M., Hawley, S. H. & 7 co-authors 1997, ApJ, 484, 472.Google Scholar
Strachan, L., Panasyuk, A. V., Dobrzycka, D., Kohl, J. L., Noci, G., Gibson, S. E., & Biesecker, D. A. 2000, J. Geophys. Res., 105, 2345.Google Scholar
Suess, S. T., Poletto, G., Romoli, M., Neugebauer, M., Goldstein, B. E. & Simnett, G. 2000, J. Geophys. Res., 105, 25033.Google Scholar
Svestka, Z., Fárnik, F., Hudson, H. S., & Hick, P. 1998, Solar Phys., 182, 179.Google Scholar
Teriaca, L., Poletto, G., Romoli, M., & Biesecker, D. A. 2003, ApJ, 588, 566.Google Scholar
Tu, C.-Y., & Marsch, E. 1997, Solar Phys., 171, 363.Google Scholar
Uzzo, M., Ko, Y.-K., Raymond, J. C., Wurz, P., & Ipavich, F. M. 2003, ApJ, 585, 1062.Google Scholar
Wang, Y.M. 1994, ApJ, 435, L153.Google Scholar
Wang, Y.M. 1994, ApJ, 437, L67.Google Scholar
Wang, Y.M., Hawley, S. H., & Sheeley, N. R. 1996, Science, 271, 464.CrossRefGoogle Scholar
Wilhelm, K., Marsch, E., Dwivedi, B., Hassler, D. M., Lemaire, P., Gabriel, A. H., & Huber, M. C. E. 1998, ApJ, 500, 1023.Google Scholar
Wilhelm, K., Dammasch, I. E., Marsch, E., & Hassler, D. M. 2000, A&A, 353, 749.Google Scholar
Withbroe, G. L., Kohl, J. L., Weiser, H., & Munro, R. H. 1982, Space Sci. Rev., 33, 17.Google Scholar
Xia, L. D., Marsch, E., & Curdt, W. 2003, A&A, 399, L5.Google Scholar
Zangrilli, L., Poletto, G., Nicolosi, P., Noci, G., & Romoli, M. 2002, ApJ, 574, 477.Google Scholar