On Alfvenic Slow Wind: A Journey From the Earth Back to the Sun

被引:42
|
作者
D'Amicis, R. [1 ]
Perrone, D. [2 ]
Bruno, R. [1 ]
Velli, M. [3 ]
机构
[1] Natl Inst Astrophys, Inst Space Astrophys & Planetol, Rome, Italy
[2] ASI Italian Space Agcy, Rome, Italy
[3] Univ Calif Los Angeles, Los Angeles, CA USA
关键词
coronal holes; interplanetary magnetic field; MHD waves and turbulence; solar wind plasma; solar wind sources; turbulence; PARKER-SOLAR-PROBE; SCALE SPECTRAL BREAK; MAGNETIC-FIELD; INNER HELIOSPHERE; RADIAL EVOLUTION; TEMPERATURE ANISOTROPY; CORONAL HOLES; KINETIC SCALES; PROTON SCALES; ION SCALES;
D O I
10.1029/2020JA028996
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Comparative studies of fast and slow solar wind streams performed over the past decades have illustrated several differences between the plasma regimes for these different flows, examples including features such as temperatures, particle distribution function anisotropies, and the nature of the embedded turbulence, specifically the Alfvenicity of the fluctuations. Though this two-state classification of the solar wind primarily based on flow speed has been widely adopted, more in depth studies have found that slow solar wind should be further categorized, flow speed not being a sufficient descriptor of the plasma state. Within this framework, slow solar wind streams with a strong Alfvenic character have been identified and characterized, showing that in many ways they resemble fast solar wind. The similarities between fast and slow Alfvenic wind regimes have been explained in terms of a similar solar origin, with the latter corresponding to slow winds emanating from rapidly diverging low-latitude small coronal holes. The aim of this review is to describe the state of art of our understanding of Alfvenic slow solar wind streams. The results presented cover observations performed at different heliocentric distances spanning from Wind at L1 to Helios and Parker Solar Probe in the inner heliosphere, as well as a discussion of their source regions.
引用
收藏
页数:16
相关论文
共 50 条
  • [1] The Slow Solar Wind: From Formation on the Sun to the Earth
    Harra, L. K.
    Fazakerley, A. N.
    van Driel-Gesztelyi, L.
    HINODE-3: THE 3RD HINODE SCIENCE MEETING, 2012, 454 : 421 - 424
  • [2] Characterizing the Alfvenic Slow Wind: a case study
    D'Amicis, R.
    Bruno, R.
    Matteini, L.
    PROCEEDINGS OF THE FOURTEENTH INTERNATIONAL SOLAR WIND CONFERENCE (SOLAR WIND 14), 2016, 1720
  • [3] ON THE ORIGIN OF HIGHLY ALFVENIC SLOW SOLAR WIND
    D'Amicis, R.
    Bruno, R.
    ASTROPHYSICAL JOURNAL, 2015, 805 (01):
  • [4] The origin of slow Alfvenic solar wind at solar minimum
    Stansby, D.
    Matteini, L.
    Horbury, T. S.
    Perrone, D.
    D'Amicis, R.
    Bercic, L.
    MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2020, 492 (01) : 39 - 44
  • [5] Sharp Alfvenic Impulses in the Near-Sun Solar Wind
    Horbury, Timothy S.
    Woolley, Thomas
    Laker, Ronan
    Matteini, Lorenzo
    Eastwood, Jonathan
    Bale, Stuart D.
    Velli, Marco
    Chandran, Benjamin D. G.
    Phan, Tai
    Raouafi, Nour E.
    Goetz, Keith
    Harvey, Peter R.
    Pulupa, Marc
    Klein, K. G.
    de Wit, Thierry Dudok
    Kasper, Justin C.
    Korreck, Kelly E.
    Case, A. W.
    Stevens, Michael L.
    Whittlesey, Phyllis
    Larson, Davin
    MacDowall, Robert J.
    Malaspina, David M.
    Livi, Roberto
    ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 2020, 246 (02):
  • [6] Investigating Alfvenic Turbulence in Fast and Slow Solar Wind Streams
    D'Amicis, Raffaella
    Perrone, Denise
    Velli, Marco
    Sorriso-Valvo, Luca
    Telloni, Daniele
    Bruno, Roberto
    De Marco, Rossana
    UNIVERSE, 2022, 8 (07)
  • [7] Phase coherence of solar wind turbulence from the Sun to Earth
    Nakanotani, Masaru
    Zhao, Lingling
    Zank, Gary P.
    FRONTIERS IN ASTRONOMY AND SPACE SCIENCES, 2023, 10
  • [8] Alfvenic velocity spikes and rotational flows in the near-Sun solar wind
    Kasper, J. C.
    Bale, S. D.
    Belcher, J. W.
    Berthomier, M.
    Case, A. W.
    Chandran, B. D. G.
    Curtis, D. W.
    Gallagher, D.
    Gary, S. P.
    Golub, L.
    Halekas, J. S.
    Ho, G. C.
    Horbury, T. S.
    Hu, Q.
    Huang, J.
    Klein, K. G.
    Korreck, K. E.
    Larson, D. E.
    Livi, R.
    Maruca, B.
    Lavraud, B.
    Louarn, P.
    Maksimovic, M.
    Martinovic, M.
    McGinnis, D.
    Pogorelov, N. V.
    Richardson, J. D.
    Skoug, R. M.
    Steinberg, J. T.
    Stevens, M. L.
    Szabo, A.
    Velli, M.
    Whittlesey, P. L.
    Wright, K. H.
    Zank, G. P.
    MacDowall, R. J.
    McComas, D. J.
    McNutt, R. L., Jr.
    Pulupa, M.
    Raouafi, N. E.
    Schwadron, N. A.
    NATURE, 2019, 576 (7786) : 228 - +
  • [9] Wave-polarization Analysis of the Alfvenic Slow Solar Wind at Kinetic Scales
    Telloni, Daniele
    Bruno, Roberto
    D'Amicis, Raffaella
    Carbone, Francesco
    De Marco, Rossana
    Perrone, Denise
    ASTROPHYSICAL JOURNAL, 2020, 897 (02):
  • [10] The Changes in Multiscale Solar Wind Fluctuations on the Path from the Sun to Earth
    Volodin, Igor D.
    Riazantseva, Maria O.
    Rakhmanova, Liudmila S.
    Khokhlachev, Alexander A.
    Yermolaev, Yuri I.
    UNIVERSE, 2024, 10 (04)