Wave-polarization Analysis of the Alfvenic Slow Solar Wind at Kinetic Scales

被引:12
|
作者
Telloni, Daniele [1 ]
Bruno, Roberto [2 ]
D'Amicis, Raffaella [2 ]
Carbone, Francesco [3 ]
De Marco, Rossana [2 ]
Perrone, Denise [4 ]
机构
[1] Natl Inst Astrophys, Astrophys Observ Torino, Via Osservatorio 20, I-10025 Pino Torinese, Italy
[2] Natl Inst Astrophys, Inst Space Astrophys & Planetol, Via Fosso del Cavaliere 100, I-00133 Rome, Italy
[3] Univ Calabria, Inst Atmospher Pollut Res, Natl Res Council, I-87036 Arcavacata Di Rende, Italy
[4] Italian Space Agcy, Via Politecn Snc, I-00133 Rome, Italy
来源
ASTROPHYSICAL JOURNAL | 2020年 / 897卷 / 02期
关键词
Magnetohydrodynamics; Space plasmas; Interplanetary turbulence; Alfven waves; Solar wind; TURBULENCE; SPEED; HELICITY; VELOCITY; REGIONS; ORIGIN; FLUID;
D O I
10.3847/1538-4357/ab980a
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
This paper reports the first polarization measurement in the Alfvenic slow solar wind. The normalized magnetic helicity is used as a diagnostic parameter for studying the polarization status of the high-frequency magnetic fluctuations, along with an attempt to identify various wave modes in the solar wind turbulence. Clear evidence for the existence of ion cyclotron waves (ICWs) and kinetic Alfven waves (KAWs) is also found in the Alfvenic low-speed plasma, robustly supporting the idea that the Alfvenic content of the solar wind fluctuations at fluid scales is the key parameter driving wave generation at kinetic scales. By separating the contributions to helicity from the two modes, it is possible to address the thermodynamical properties of ICWs and KAWs and provide the first direct estimate of their magnetic compressibility. In particular, while ICWs are mainly associated with higher levels of anisotropy and appear to be bounded by the threshold of proton-cyclotron kinetic instability, KAWs (which end up being more compressive than ICWs) are found at lower anisotropies and seem to be limited by the mirror mode instability threshold, extending as well to near the parallel fire hose unstable region. These result are relevant to theories of turbulence and dissipation in the solar wind.
引用
收藏
页数:6
相关论文
共 50 条
  • [21] Intermittency in Solar Wind Turbulence From Fluid to Kinetic Scales
    Bruno, Roberto
    EARTH AND SPACE SCIENCE, 2019, 6 (05) : 656 - 672
  • [22] IDENTIFICATION OF KINETIC ALFVEN WAVE TURBULENCE IN THE SOLAR WIND
    Salem, C. S.
    Howes, G. G.
    Sundkvist, D.
    Bale, S. D.
    Chaston, C. C.
    Chen, C. H. K.
    Mozer, F. S.
    ASTROPHYSICAL JOURNAL LETTERS, 2012, 745 (01)
  • [23] EVIDENCE OF THE ION CYCLOTRON RESONANCE AT PROTON KINETIC SCALES IN THE SOLAR WIND
    Roberts, O. W.
    Li, Xing
    ASTROPHYSICAL JOURNAL, 2015, 802 (01):
  • [24] NONLINEAR AND LINEAR TIMESCALES NEAR KINETIC SCALES IN SOLAR WIND TURBULENCE
    Matthaeus, W. H.
    Oughton, S.
    Osman, K. T.
    Servidio, S.
    Wan, M.
    Gary, S. P.
    Shay, M. A.
    Valentini, F.
    Roytershteyn, V.
    Karimabadi, H.
    Chapman, S. C.
    ASTROPHYSICAL JOURNAL, 2014, 790 (02):
  • [25] Modeling magnetospheric response to synthetic Alfvenic fluctuations in the solar wind: ULF wave fields in the magnetosphere
    McGregor, S. L.
    Hudson, M. K.
    Hughes, W. J.
    JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 2014, 119 (11) : 8801 - 8812
  • [26] PLASMA TURBULENCE AND KINETIC INSTABILITIES AT ION SCALES IN THE EXPANDING SOLAR WIND
    Hellinger, Petr
    Matteini, Lorenzo
    Landi, Simone
    Verdini, Andrea
    Franci, Luca
    Travnicek, Pavel M.
    ASTROPHYSICAL JOURNAL LETTERS, 2015, 811 (02)
  • [27] SPECTRAL SLOPE VARIATION AT PROTON SCALES FROM FAST TO SLOW SOLAR WIND
    Bruno, R.
    Trenchi, L.
    Telloni, D.
    ASTROPHYSICAL JOURNAL LETTERS, 2014, 793 (01)
  • [28] A KINETIC ALFVEN WAVE CASCADE SUBJECT TO COLLISIONLESS DAMPING CANNOT REACH ELECTRON SCALES IN THE SOLAR WIND AT 1 AU
    Podesta, J. J.
    Borovsky, J. E.
    Gary, S. P.
    ASTROPHYSICAL JOURNAL, 2010, 712 (01): : 685 - 691
  • [29] On Kinetic Slow Modes, Fluid Slow Modes, and Pressure-balanced Structures in the Solar Wind
    Verscharen, Daniel
    Chen, Christopher H. K.
    Wicks, Robert T.
    ASTROPHYSICAL JOURNAL, 2017, 840 (02):
  • [30] Statistical Analysis of Field-Aligned Alfvenic Turbulence and Intermittency in Fast Solar Wind
    Carbone, Francesco
    Telloni, Daniele
    Sorriso-Valvo, Luca
    Zank, Gary
    Zhao, Lingling
    Adhikari, Laxman
    Bruno, Roberto
    UNIVERSE, 2020, 6 (08)