Some Glimpses from Helioseismology at the Dynamics of the Deep Solar Interior
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  • 作者:D. O. Gough
  • 关键词:Sun ; Helioseismology ; Dynamics
  • 刊名:Space Science Reviews
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:196
  • 期:1-4
  • 页码:15-47
  • 全文大小:2,032 KB
  • 参考文献:L.A. Acevedo-Arreguin, P. Garaud, T.S. Wood, Dynamics of the solar tachocline鈥擨II. Numerical solutions of the Gough and McIntyre model. Mon. Not. R. Astron. Soc. 434, 720鈥?41 (2013). doi:10.鈥?093/鈥媘nras/鈥媠tt1065 ADS
    L. Ambronn, A.C.W. Schur, Die Messungen des Sonnendurchmessers an dem Repsold鈥檚chen 6-zoelligen Heliometer der Sternwarte zu G枚ttingen. Astron. Mitt. Koenig. Sternwarte G枚ttingen, 7:T (1905)
    H.M. Antia, S. Basu, Revisiting the solar tachocline: average properties and temporal variations. Astrophys. J. Lett. 735, 45 (2011). doi:10.鈥?088/鈥?041-8205/鈥?35/鈥?/鈥婰45 ADS
    H.M. Antia, S. Basu, S.M. Chitre, Solar internal rotation rate and the latitudinal variation of the tachocline. Mon. Not. R. Astron. Soc. 298, 543鈥?56 (1998). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?998.鈥?1635.鈥媥 ADS
    H.M. Antia, S.M. Chitre, D.O. Gough, On the magnetic field required for driving the observed angular-velocity variations in the solar convection zone. Mon. Not. R. Astron. Soc. 428, 470鈥?75 (2013). doi:10.鈥?093/鈥媘nras/鈥媠ts040 ADS
    T. Appourchaux, K. Belkacem, A.-M. Broomhall, W.J. Chaplin, D.O. Gough, G. Houdek, J. Provost, F. Baudin, P. Boumier, Y. Elsworth, R.A. Garc铆a, B.N. Andersen, W. Finsterle, C. Fr枚hlich, A. Gabriel, G. Grec, A. Jim茅nez, A. Kosovichev, T. Sekii, T. Toutain, S. Turck-Chi猫ze, The quest for the solar g modes. Astron. Astrophys. Rev. 18, 197鈥?77 (2010). doi:10.鈥?007/鈥媠00159-009-0027-z ADS
    R. Arlt, A. Sule, G. R眉diger, Stability of toroidal magnetic fields in the solar tachocline. Astron. Astrophys. 461, 295鈥?01 (2007). doi:10.鈥?051/鈥?004-6361:鈥?0065192 ADS
    M. Asplund, N. Grevesse, A.J. Sauval, P. Scott, The chemical composition of the Sun. Annu. Rev. Astron. Astrophys. 47, 481鈥?22 (2009). doi:10.鈥?146/鈥媋nnurev.鈥媋stro.鈥?6.鈥?60407.鈥?45222 ADS
    A. Auwers, Der Sonnendurchmesser und der Venusdurchmesser nach den Beobachtungen an den Heliometern der deutschen Venus-Expeditionen. Astron. Nachr. 128, 361 (1891). doi:10.鈥?002/鈥媋sna.鈥?8911282002 ADS
    J.N. Bahcall, R.K. Ulrich, Solar models, neutrino experiments, and helioseismology. Rev. Mod. Phys. 60, 297鈥?72 (1988). doi:10.鈥?103/鈥婻evModPhys.鈥?0.鈥?97 ADS
    J.N. Bahcall, M.H. Pinsonneault, S. Basu, Solar models: current epoch and time dependences, neutrinos, and helioseismological properties. Astrophys. J. 555, 990鈥?012 (2001). doi:10.鈥?086/鈥?21493 ADS
    S.A. Balbus, J.F. Hawley, A powerful local shear instability in weakly magnetized disks. I鈥擫inear analysis. II鈥擭onlinear evolution. Astrophys. J. 376, 214鈥?33 (1991). doi:10.鈥?086/鈥?70270 ADS
    M.P. Baldwin, L.J. Gray, T.J. Dunkerton, K. Hamilton, P.H. Haynes, W.J. Randel, J.R. Holton, M.J. Alexander, I. Hirota, T. Horinouchi, D.B.A. Jones, J.S. Kinnersley, C. Marquardt, K. Sato, M. Takahashi, The quasi-biennial oscillation. Rev. Geophys. 39, 179鈥?29 (2001). doi:10.鈥?029/鈥?999RG000073 ADS
    N.J. Balmforth, Solar pulsational stability. Part Three鈥擜coustical excitation by turbulent convection. Mon. Not. R. Astron. Soc. 255, 639 (1992) ADS
    N.J. Balmforth, D.O. Gough, Mixing-length theory and the excitation of solar acoustic oscillations. Sol. Phys. 128, 161鈥?93 (1990). doi:10.鈥?007/鈥婤F00154155 ADS
    S. Basu, Seismology of the base of the solar convection zone. Mon. Not. R. Astron. Soc. 288, 572鈥?84 (1997) ADS
    S. Basu, H.M. Antia, A study of possible temporal and latitudinal variations in the properties of the solar tachocline. Mon. Not. R. Astron. Soc. 324, 498鈥?08 (2001). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?001.鈥?4364.鈥媥 ADS
    S. Basu, H.M. Antia, Changes in solar dynamics from 1995 to 2002. Astrophys. J. 585, 553鈥?65 (2003). doi:10.鈥?086/鈥?46020 ADS
    S. Basu, W.J. Chaplin, Y. Elsworth, R. New, A.M. Serenelli, Fresh insights on the structure of the solar core. Astrophys. J. 699, 1403鈥?417 (2009). doi:10.鈥?088/鈥?004-637X/鈥?99/鈥?/鈥?403 ADS
    G.K. Batchelor, The Theory of Homogeneous Turbulence (Cambridge University Press, Cambridge, 1953)
    F. Baudin, C. Barban, K. Belkacem, S. Hekker, T. Morel, R. Samadi, O. Benomar, M.-J. Goupil, F. Carrier, J. Ballot, S. Deheuvels, J. De Ridder, A.P. Hatzes, T. Kallinger, W.W. Weiss, Amplitudes and lifetimes of solar-like oscillations observed by CoRoT (Corrigendum). Red-giant versus main-sequence stars. Astron. Astrophys. 535, 1 (2011). doi:10.鈥?051/鈥?004-6361/鈥?01014037e ADS
    K. Belkacem, R. Samadi, M.J. Goupil, M.A. Dupret, A.S. Brun, F. Baudin, Stochastic excitation of nonradial modes. II. Are solar asymptotic gravity modes detectable? Astron. Astrophys. 494, 191鈥?04 (2009). doi:10.鈥?051/鈥?004-6361:鈥?00810827 ADS
    G. Berthomieu, M. Cribier (eds.), Inside the Sun, in IAU Colloq. 121: Inside the Sun, Astrophysics and Space Science Library, vol. 159 (1990)
    G. Berthomieu, J. Provost, A. Rocca, A.J. Cooper, D.O. Gough, Y. Osaki, Sensitivity of five minute eigenfrequencies to the structure of the Sun, in Nonradial and Nonlinear Stellar Pulsation, ed. by H.A. Hill, W.A. Dziembowski Lecture Notes in Physics, vol. 125 (Springer, Berlin, 1980), pp. 307鈥?12. doi:10.鈥?007/鈥?-540-09994-8-29
    H. Bondi, R.A. Lyttleton, On the dynamical theory of the rotation of the Earth. Proc. Camb. Philos. Soc. 44, 345 (1948). doi:10.鈥?017/鈥婼030500410002436鈥? MathSciNet ADS
    A. Boury, M. Gabriel, A. Noels, R. Scuflaire, P. Ledoux, Vibrational instability of a 1 solar mass star towards non-radial oscillations. Astron. Astrophys. 41, 279鈥?85 (1975) ADS
    C. Brans, R.H. Dicke, Mach鈥檚 principle and a relativistic theory of gravitation. Phys. Rev. 124, 925鈥?35 (1961). doi:10.鈥?103/鈥婸hysRev.鈥?24.鈥?25 MathSciNet ADS
    F.P. Bretherton, A.E. Spiegel, The effect of the convection zone on solar spin-down. Astrophys. J. Lett. 153, 77 (1968). doi:10.鈥?086/鈥?80224 ADS
    A.-M. Broomhall, W.J. Chaplin, Y. Elsworth, R. Simoniello, Quasi-biennial variations in helioseismic frequencies: can the source of the variation be localized? Mon. Not. R. Astron. Soc. 420, 1405鈥?414 (2012). doi:10.鈥?111/鈥媕.鈥?365-2966.鈥?011.鈥?0123.鈥媥 ADS
    A.S. Brun, J.-P. Zahn, Magnetic confinement of the solar tachocline. Astron. Astrophys. 457, 665鈥?74 (2006). doi:10.鈥?051/鈥?004-6361:鈥?0053908 ADS
    A.S. Brun, M.K. Browning, M. Dikpati, H. Hotta, A. Strugarek, Recent advances on solar global magnetism and variability. Space Sci. Rev. (2015). doi:10.鈥?007/鈥媠11214-013-0028-0
    B.M. Byington, N.H. Brummell, J.M. Stone, D.O. Gough, Stoked nondynamos: sustaining field in magnetically non-closed systems. New J. Phys. 16(8), 083002 (2014). doi:10.鈥?088/鈥?367-2630/鈥?6/鈥?/鈥?83002 ADS
    E. Caffau, E. Maiorca, P. Bonifacio, R. Faraggiana, M. Steffen, H.-G. Ludwig, I. Kamp, M. Busso, The solar photospheric nitrogen abundance. Analysis of atomic transitions with 3D and 1D model atmospheres. Astron. Astrophys. 498, 877鈥?84 (2009). doi:10.鈥?051/鈥?004-6361/鈥?00810859 ADS
    S. Chandrasekhar, The stability of non-dissipative Couette flow in hydromagnetics. Proc. Natl. Acad. Sci. 46, 253鈥?57 (1960). doi:10.鈥?073/鈥媝nas.鈥?6.鈥?.鈥?53 MathSciNet ADS
    W.J. Chaplin, J. Christensen-Dalsgaard, Y. Elsworth, R. Howe, G.R. Isaak, R.M. Larsen, R. New, J. Schou, M.J. Thompson, S. Tomczyk, Rotation of the solar core from BiSON and LOWL frequency observations. Mon. Not. R. Astron. Soc. 308, 405鈥?14 (1999). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?999.鈥?2691.鈥媥 ADS
    W.J. Chaplin, G. Houdek, Y. Elsworth, D.O. Gough, G.R. Isaak, R. New, On model predictions of the power spectral density of radial solar p modes. Mon. Not. R. Astron. Soc. 360, 859鈥?68 (2005). doi:10.鈥?111/鈥媕.鈥?365-2966.鈥?005.鈥?9041.鈥媥 ADS
    P. Charbonneau, K.B. MacGregor, Solar spin-down with internal magnetic fields. Astrophys. J. Lett. 397, 63鈥?6 (1992). doi:10.鈥?086/鈥?86545 ADS
    P. Charbonneau, K.B. MacGregor, Angular momentum transport in magnetized stellar radiative zones. II. The solar spin-down. Astrophys. J. 417, 762 (1993a). doi:10.鈥?086/鈥?73357 ADS
    P. Charbonneau, K.B. MacGregor, Solar spin-down with internal magnetic fields: erratum. Astrophys. J. Lett. 403, 87 (1993b). doi:10.鈥?086/鈥?86728 ADS
    P. Charbonneau, J. Christensen-Dalsgaard, R. Henning, R.M. Larsen, J. Schou, M.J. Thompson, S. Tomczyk, Helioseismic constraints on the structure of the solar tachocline. Astrophys. J. 527, 445鈥?60 (1999). doi:10.鈥?086/鈥?08050 ADS
    J. Christensen-Dalsgaard, F.W.W. Dilke, D.O. Gough, The stability of a solar model to non-radial oscillations. Mon. Not. R. Astron. Soc. 169, 429鈥?45 (1974) ADS
    J. Christensen-Dalsgaard, D.O. Gough, J.G. Morgan, Dirty solar models. Astron. Astrophys. 73, 121鈥?28 (1979a) ADS
    J. Christensen-Dalsgaard, D.O. Gough, J.G. Morgan, Erratum: 鈥淒irty solar models鈥?[Astron. Astrophys. 79, 121鈥?28 (1979)]. Astron. Astrophys. 79, 260 (1979b) ADS
    J. Christensen-Dalsgaard, T.L. Duvall Jr., D.O. Gough, J.W. Harvey, E.J. Rhodes Jr., Speed of sound in the solar interior. Nature 315, 378鈥?82 (1985). doi:10.鈥?038/鈥?15378a0 ADS
    J. Christensen-Dalsgaard, W. D盲ppen, S.V. Ajukov, E.R. Anderson, H.M. Antia, S. Basu, V.A. Baturin, G. Berthomieu, B. Chaboyer, S.M. Chitre, A.N. Cox, P. Demarque, J. Donatowicz, W.A. Dziembowski, M. Gabriel, D.O. Gough, D.B. Guenther, J.A. Guzik, J.W. Harvey, F. Hill, G. Houdek, C.A. Iglesias, A.G. Kosovichev, J.W. Leibacher, P. Morel, C.R. Proffitt, J. Provost, J. Reiter, E.J. Rhodes Jr., F.J. Rogers, I.W. Roxburgh, M.J. Thompson, R.K. Ulrich, The current state of solar modeling. Science 272, 1286鈥?292 (1996). doi:10.鈥?126/鈥媠cience.鈥?72.鈥?266.鈥?286 ADS
    J. Christensen-Dalsgaard, M.J.P.F.G. Monteiro, M. Rempel, M.J. Thompson, A more realistic representation of overshoot at the base of the solar convective envelope as seen by helioseismology. Mon. Not. R. Astron. Soc. 414, 1158鈥?174 (2011). doi:10.鈥?111/鈥媕.鈥?365-2966.鈥?011.鈥?8460.鈥媥 ADS
    A. Clark Jr., J.H. Thomas, P.A. Clark, Solar differential rotation and oblateness. Science 164, 290鈥?91 (1969). doi:10.鈥?126/鈥媠cience.鈥?64.鈥?877.鈥?90 ADS
    T. Corbard, G. Berthomieu, J. Provost, P. Morel, Inferring the equatorial solar tachocline from frequency splittings. Astron. Astrophys. 330, 1149鈥?159 (1998) ADS
    T. Corbard, L. Blanc-F茅raud, G. Berthomieu, J. Provost, Non linear regularization for helioseismic inversions. Application for the study of the solar tachocline. Astron. Astrophys. 344, 696鈥?08 (1999) ADS
    T.G. Cowling, Magnetohydrodynamics (Hilger, Bristol, 1976)
    A. Cumming, W.C. Haxton, 3He transport in the Sun and the solar neutrino problem. Phys. Rev. Lett. 77, 4286鈥?289 (1996). doi:10.鈥?103/鈥婸hysRevLett.鈥?7.鈥?286 ADS
    C. Damiani, J.P. Rozelot, S. Lefebvre, A. Kilcik, A.G. Kosovichev, A brief history of the solar oblateness. A review. J. Atmos. Sol.-Terr. Phys. 73, 241鈥?50 (2011). doi:10.鈥?016/鈥媕.鈥媕astp.鈥?010.鈥?2.鈥?21 ADS
    P.H. Diamond, S.-I. Itoh, K. Itoh, L.J. Silvers, 尾-Plane Mhd turbulence and dissipation in the solar tachocline, in The Solar Tachocline, ed. by D.W. Hughes, R. Rosner, N.O. Weiss (2007), p. 213
    R.H. Dicke, The Sun鈥檚 rotation and relativity. Nature 202, 432鈥?35 (1964). doi:10.鈥?038/鈥?02432a0 ADS
    R.H. Dicke, The solar spin-down problem. Astrophys. J. Lett. 149, 121 (1967). doi:10.鈥?086/鈥?80072 ADS
    R.H. Dicke, The solar oblateness and the gravitational quadrupole moment. Astrophys. J. 159, 1 (1970). doi:10.鈥?086/鈥?50286 ADS
    R.H. Dicke, H.M. Goldenberg, Solar oblateness and general relativity. Phys. Rev. Lett. 18, 313鈥?16 (1967). doi:10.鈥?103/鈥婸hysRevLett.鈥?8.鈥?13 ADS
    R.H. Dicke, H.M. Goldenberg, The oblateness of the Sun. Astrophys. J. Suppl. 27, 131 (1974). doi:10.鈥?086/鈥?90292 ADS
    F.W.W. Dilke, D.O. Gough, The solar spoon. Nature 240, 262鈥?94 (1972). doi:10.鈥?038/鈥?40262a0 ADS
    M.-A. Dupret, A. Grigahc猫ne, R. Garrido, M. Gabriel, R. Scuflaire, Convection-pulsation coupling. II. Excitation and stabilization mechanisms in 未 Sct and 纬 Dor stars. Astron. Astrophys. 435, 927鈥?39 (2005). doi:10.鈥?051/鈥?004-6361:鈥?0041817 ADS
    M.A. Dupret, C. Barban, M.-J. Goupil, R. Samadi, A. Grigahc猫ne, M. Gabriel, Theoretical damping rates and phase-lags for solar-like oscillations, in Proceedings of SOHO 18/GONG 2006/HELAS I, Beyond the Spherical Sun. ESA Special Publication, vol. 624 (2006), p. 97
    M.-A. Dupret, K. Belkacem, R. Samadi, J. Montalban, O. Moreira, A. Miglio, M. Godart, P. Ventura, H.-G. Ludwig, A. Grigahc猫ne, M.-J. Goupil, A. Noels, E. Caffau, Theoretical amplitudes and lifetimes of non-radial solar-like oscillations in red giants. Astron. Astrophys. 506, 57鈥?7 (2009). doi:10.鈥?051/鈥?004-6361/鈥?00911713 ADS
    T.L. Duvall Jr., W.A. Dziembowski, P.R. Goode, D.O. Gough, J.W. Harvey, J.W. Leibacher, Internal rotation of the Sun. Nature 310, 22鈥?5 (1984). doi:10.鈥?038/鈥?10022a0 ADS
    W. Dziembowski, Nonlinear mode coupling in oscillating stars. I鈥擲econd order theory of the coherent mode coupling. Acta Astron. 32, 147鈥?71 (1982) ADS
    W. Dziembowski, Resonant coupling between solar gravity modes. Sol. Phys. 82, 259鈥?66 (1983). doi:10.鈥?007/鈥婤F00145568 ADS
    A.S. Eddington, The Internal Constitution of the Stars (Cambridge University Press, Cambridge, 1926)
    A. Einstein, Die Ursache der M盲anderbildung der Flu脽l盲ufe und des sogenannten Baerschen Gesetzes. Naturwissenschaften 14, 223鈥?24 (1926). doi:10.鈥?007/鈥婤F01510300 ADS
    V.W. Ekman, Ark. Mat. Astron. Fys. 2(11), 1鈥?2 (1905)
    J.R. Elliott, Aspects of the solar tachocline. Astron. Astrophys. 327, 1222鈥?229 (1997) ADS
    J.R. Elliott, D.O. Gough, Calibration of the thickness of the solar tachocline. Astrophys. J. 516, 475鈥?81 (1999). doi:10.鈥?086/鈥?07092 ADS
    A.N. Ellis, The base of the solar convection zone, in Theoretical Problems in Stellar Stability and Oscillations. Liege International Astrophysical Colloquia, vol. 25 (1984), pp. 290鈥?92
    Y. Elsworth, R. Howe, G.R. Isaak, C.P. McLeod, B.A. Miller, R. New, S.J. Wheeler, D.O. Gough, Slow rotation of the Sun鈥檚 interior. Nature 376, 669鈥?72 (1995). doi:10.鈥?038/鈥?76669a0 ADS
    M.D. Fivian, H.S. Hudson, R.P. Lin, H.J. Zahid, A large excess in apparent solar oblateness due to surface magnetism. Science 322, 560 (2008). doi:10.鈥?126/鈥媠cience.鈥?160863 ADS
    E. Forg谩cs-Dajka, K. Petrovay, Tachocline confinement by an oscillatory magnetic field. Sol. Phys. 203, 195鈥?10 (2001). doi:10.鈥?023/鈥婣:鈥?013389631585 ADS
    E. Forg谩cs-Dajka, K. Petrovay, Dynamics of the fast solar tachocline. I. Dipolar field. Astron. Astrophys. 389, 629鈥?40 (2002). doi:10.鈥?051/鈥?004-6361:鈥?0020586 ADS
    D.C. Fritts, S.L. Vadas, O. Andreassen, Gravity wave excitation and momentum transport in the solar interior: implications for a residual circulation and lithium depletion. Astron. Astrophys. 333, 343鈥?61 (1998) ADS
    M. Gabriel, Solar oscillations: theory. Bull. Astron. Soc. India 24, 233 (1996) ADS
    A.H. Gabriel, G. Grec, J. Charra, J.-M. Robillot, T. Roca Cort茅s, S. Turck-Chi猫ze, R. Bocchia, P. Boumier, M. Cantin, E. Cesp茅des, B. Cougrand, J. Cr茅tolle, L. Dam茅, M. Decaudin, P. Delache, N. Denis, R. Duc, H. Dzitko, E. Fossat, J.-J. Fourmond, R.A. Garc铆a, D.O. Gough, C. Grivel, J.M. Herreros, H. Lagard猫re, J.-P. Moalic, P.L. Pall茅, N. P茅trou, M. Sanchez, R.K. Ulrich, H.B. van der Raay, Global Oscillations at Low Frequency from the SOHO Mission (GOLF). Sol. Phys. 162, 61鈥?9 (1995). doi:10.鈥?007/鈥婤F00733427 ADS
    G. Gamow, Does gravity change with time? Proc. Natl. Acad. Sci. 57, 187鈥?93 (1967). doi:10.鈥?073/鈥媝nas.鈥?7.鈥?.鈥?87 ADS
    P. Garaud, Propagation of a dynamo field in the radiative interior of the Sun. Mon. Not. R. Astron. Soc. 304, 583鈥?88 (1999). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?999.鈥?2338.鈥媥 ADS
    P. Garaud, Dynamics of the solar tachocline鈥擨. An incompressible study. Mon. Not. R. Astron. Soc. 329, 1鈥?7 (2002). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?002.鈥?4961.鈥媥 ADS
    P. Garaud, C. Guervilly, The rotation rate of the solar radiative zone. Astrophys. J. 695, 799鈥?08 (2009). doi:10.鈥?088/鈥?004-637X/鈥?95/鈥?/鈥?99 ADS
    R.J. Garcia Lopez, H.C. Spruit, Li depletion in F stars by internal gravity waves. Astrophys. J. 377, 268鈥?77 (1991). doi:10.鈥?086/鈥?70356 ADS
    P.A. Gilman, P.S. Cally, Global Mhd instabilities of the tachocline, in The Solar Tachocline, ed. by D.W. Hughes, R. Rosner, N.O. Weiss (2007), p. 243
    P. Goldreich, D.A. Keeley, Solar seismology. II鈥擳he stochastic excitation of the solar p modes by turbulent convection. Astrophys. J. 212, 243鈥?51 (1977). doi:10.鈥?086/鈥?55043 ADS
    D.O. Gough, The internal structure of late-type main-sequence stars, in Astrophysics: Recent Progress and Future Possibilities, ed. by B. Gustafsson, P.E. Nissen (1990), pp. 13鈥?0. K. Dan. Vidensk. Selsk., Mat-fys Medd, Mat-fys Medd 42(4)
    D.O. Gough, The pulsational stability of a convective atmosphere, in Geophys. Fluid Dynamics II. Woods Hole Oceanographic Institution (1965), pp. 49鈥?4
    D.O. Gough, Random remarks on solar hydrodynamics, in IAU Colloq. 36: The Energy Balance and Hydrodynamics of the Solar Chromosphere and Corona, ed. by R.M. Bonnet, P. Delache, G. de Bussac (de Bussac, Clermont-Ferrand, 1977a), pp. 3鈥?6
    D.O. Gough, Theoretical predictions of variations in the solar output, in The Solar Output and Its Variation, ed. by O.R. White (1977b), p. 451
    D.O. Gough, The significance of solar oscillations, in Pleins Feux sur la Physique Solaire, ed. by S. Dumont, J. Roesch (1978), p. 81
    D.O. Gough, A new measure of the solar rotation. Mon. Not. R. Astron. Soc. 196, 731鈥?45 (1981) ADS
    D.O. Gough, Theory of solar oscillations, in Future Missions in Solar, Heliospheric & Space Plasma Physics, ed. by E. Rolfe, B. Battrick ESA Special Publication, vol. 235 (1985), pp. 183鈥?97
    D.O. Gough, Theory of solar variation, in Solar-Terrestrial Relationships and the Earth Environment in the Last Millennia, ed. by G. Cini Castagnoli (Soc. Italiana di Fisica, Bologna, 1988), pp. 90鈥?32
    D.O. Gough, On Possible Origins of Relatively Short-Term Variations in the Solar Structure. Philos. Trans. R. Soc. Lond. Ser. A 330, 627鈥?40 (1990a). doi:10.鈥?098/鈥媟sta.鈥?990.鈥?043 ADS
    D.O. Gough, Open questions, in IAU Colloq. 121: Inside the Sun, ed. by G. Berthomieu, M. Cribier Astrophysics and Space Science Library, vol. 159 (1990b), p. 451
    D.O. Gough, On the composition of the solar interior: rapporteur paper 1. Space Sci. Rev. 85, 141鈥?58 (1998). doi:10.鈥?023/鈥婣:鈥?005105224272 ADS
    D.O. Gough, Helioseismology and solar neutrinos. Nucl. Phys. B, Proc. Suppl. 77, 81鈥?8 (1999). doi:10.鈥?016/鈥婼0920-5632(99)00401-6 ADS
    D.O. Gough, How is solar activity influencing the structure of the Sun, in From Solar Min to Max: Half a Solar Cycle with SOHO, ed. by A. Wilson ESA Special Publication, vol. 508 (2002), pp. 577鈥?92
    D.O. Gough, How oblate is the Sun? Science 337, 1611鈥?612 (2012a). doi:10.鈥?126/鈥媠cience.鈥?226988 ADS
    D.O. Gough, Pattern formation in rapidly oscillating peculiar A stars. Geophys. Astrophys. Fluid Dyn. 106, 429鈥?49 (2012b) ADS
    D.O. Gough, A.G. Kosovichev, Using helioseismic data to probe the hydrogen abundance in the solar core, in IAU Colloq. 121: Inside the Sun, ed. by G. Berthomieu, M. Cribier Astrophysics and Space Science Library, vol. 159 (1990), p. 327
    D.O. Gough, M.E. McIntyre, Inevitability of a magnetic field in the Sun鈥檚 radiative interior. Nature 394, 755鈥?57 (1998). doi:10.鈥?038/鈥?9472 ADS
    D.O. Gough, A.G. Kosovichev, T. Toutain, Constrained estimates of low-degree mode frequencies and the determination of the interior structure of the Sun. Sol. Phys. 157, 1鈥?5 (1995). doi:10.鈥?007/鈥婤F00680605 ADS
    H.P. Greenspan, The Theory of Rotating Fluids (Cambridge University Press, Cambridge, 1969)
    H.P. Greenspan, L.N. Howard, On a time-dependent motion of a rotating fluid. J. Fluid Mech. 17, 385鈥?04 (1963). doi:10.鈥?017/鈥婼002211206300141鈥? MathSciNet ADS
    N. Gyenge, T. Baranyi, A. Ludm谩ny, Migration and extension of solar active longitudinal zones. Sol. Phys. 289, 579鈥?91 (2014). doi:10.鈥?007/鈥媠11207-013-0424-3 ADS
    S. Hanasoge, M.S. Miesch, M. Roth, J. Schou, M. Sch眉ssler, M.J. Thompson, Solar dynamics, rotation, convection and overshoot. Space Sci. Rev. (2015). doi:10.鈥?007/鈥媠11214-015
    J. Hartmann, Theory of the laminar flow of an electrically conductive liquid in a homogeneous magnetic field. K. Dan. Vidensk. Selsk., Mat-fys Medd 15(6), 1鈥?8 (1937)
    P.H. Haynes, M.E. McIntyre, T.G. Shepherd, C.J. Marks, K.P. Shine, On the 鈥楧ownward Control鈥?of extratropical diabatic circulations by Eddy-induced mean zonal forces. J. Atmos. Sci. 48, 651鈥?80 (1991). doi:10.鈥?175/鈥?520-0469(1991)048<0651:鈥婳TCOED>2.鈥?.鈥婥O;2 ADS
    H.A. Hill, R.T. Stebbins, The intrinsic visual oblateness of the Sun. Astrophys. J. 200, 471鈥?75 (1975). doi:10.鈥?086/鈥?53813 ADS
    J.R. Holton, The influence of viscous boundary layers on transient motions in a stratified rotating fluid. Part I. J. Atmos. Sci. 22, 402鈥?11 (1965a). doi:10.鈥?175/鈥?520-0469(1965)022<0402:鈥婽IOVBL>2.鈥?.鈥婥O;2 ADS
    J.R. Holton, The influence of viscous boundary layers on transient motions in a stratified rotating fluid. Part II. J. Atmos. Sci. 22, 535鈥?40 (1965b). doi:10.鈥?175/鈥?520-0469(1965)022<0535:鈥婽IOVBL>2.鈥?.鈥婥O;2 ADS
    J.R. Holton, R.S. Lindzen, An updated theory for the quasi-biennial cycle of the tropical stratosphere. J. Atmos. Sci. 29, 1076鈥?080 (1972). doi:10.鈥?175/鈥?520-0469(1972)029<1076:鈥婣UTFTQ>2.鈥?.鈥婥O;2 ADS
    G. Houdek, D.O. Gough, Modelling pulsation amplitudes of 尉 Hydrae. Mon. Not. R. Astron. Soc. 336, 65鈥?9 (2002). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?002.鈥?6024.鈥媥 ADS
    G. Houdek, N.J. Balmforth, J. Christensen-Dalsgaard, D.O. Gough, Amplitudes of stochastically excited oscillations in main-sequence stars. Astron. Astrophys. 351, 582鈥?96 (1999) ADS
    L.N. Howard, D.W. Moore, E.A. Spiegel, Solar spin-down problem. Nature 214, 1297 (1967) ADS
    R. Howe, Solar interior rotation and its variation. Living Rev. Sol. Phys. 6, 1 (2009). doi:10.鈥?2942/鈥媗rsp-2009-1 ADS
    R. Howe, J. Christensen-Dalsgaard, F. Hill, R.W. Komm, R.M. Larsen, J. Schou, M.J. Thompson, J. Toomre, Dynamic variations at the base of the solar convection zone. Science 287, 2456鈥?460 (2000). doi:10.鈥?126/鈥媠cience.鈥?87.鈥?462.鈥?456 ADS
    R. Howe, R. Komm, F. Hill, J. Christensen-Dalsgaard, T.P. Larson, J. Schou, M.J. Thompson, J. Toomre, Rotation-rate variations at the tachocline: an update. J. Phys. Conf. Ser. 271(1), 012075 (2011). doi:10.鈥?088/鈥?742-6596/鈥?71/鈥?/鈥?12075 ADS
    D. Huber, T.R. Bedding, D. Stello, B. Mosser, S. Mathur, T. Kallinger, S. Hekker, Y.P. Elsworth, D.L. Buzasi, J. De Ridder, R.L. Gilliland, H. Kjeldsen, W.J. Chaplin, R.A. Garc铆a, S.J. Hale, H.L. Preston, T.R. White, W.J. Borucki, J. Christensen-Dalsgaard, B.D. Clarke, J.M. Jenkins, D. Koch, Asteroseismology of red giants from the first four months of Kepler data: global oscillation parameters for 800 stars. Astrophys. J. 723, 1607鈥?617 (2010). doi:10.鈥?088/鈥?004-637X/鈥?23/鈥?/鈥?607 ADS
    D.W. Hughes, R. Rosner, N.O. Weiss (eds.), The Solar Tachocline 2007
    H.E. Huppert, E.A. Spiegel, Penetration of the molecular-weight barrier. Astrophys. J. 213, 157鈥?64 (1977). doi:10.鈥?086/鈥?55140 ADS
    C. Jordinson, D.O. Gough, The effect of the solar cycle on the resonant coupling of G modes, in IAU Colloq. 176: The Impact of Large-Scale Surveys on Pulsating Star Research, ed. by L. Szabados, D. Kurtz Astronomical Society of the Pacific Conference Series, vol. 203 (2000), p. 390
    A. Kasahara, W.M. Washington, General circulation experiments with a six-layer NCAR model, including orography, cloudiness and surface temperature calculations. J. Atmos. Sci. 28, 657鈥?01 (1971). doi:10.鈥?175/鈥?520-0469(1971)028<0657:鈥婫CEWAS>2.鈥?.鈥婥O;2 ADS
    E.-J. Kim, K.B. MacGregor, Gravity wave-driven flows in the solar tachocline. Astrophys. J. Lett. 556, 117鈥?20 (2001). doi:10.鈥?086/鈥?22973 ADS
    E.-J. Kim, K.B. MacGregor, Gravity wave-driven flows in the solar tachocline. II. Stationary flows. Astrophys. J. 588, 645鈥?54 (2003). doi:10.鈥?086/鈥?73943 ADS
    L.L. Kitchatinov, G. R眉diger, Magnetic field confinement by meridional flow and the solar tachocline. Astron. Astrophys. 453, 329鈥?33 (2006). doi:10.鈥?051/鈥?004-6361:鈥?0064867 ADS
    L.L. Kitchatinov, G. R眉diger, Stability of toroidal magnetic fields in the solar tachocline and beneath. Astron. Nachr. 328, 1150 (2007). doi:10.鈥?002/鈥媋sna.鈥?00710859 ADS
    E. Knobloch, W.J. Merryfield, Enhancement of diffusive transport in oscillatory flows. Astrophys. J. 401, 196鈥?05 (1992). doi:10.鈥?086/鈥?72052 ADS
    A.G. Kosovichev, Helioseismic constraints on the gradient of angular velocity at the base of the solar convection zone. Astrophys. J. Lett. 469, 61 (1996). doi:10.鈥?086/鈥?10253 ADS
    J.R. Kuhn, R. Bush, M. Emilio, I.F. Scholl, The precise solar shape and its variability. Science 337, 1638鈥?640 (2012). doi:10.鈥?126/鈥媠cience.鈥?223231 ADS
    P. Kumar, E.J. Quataert, Angular momentum transport by gravity waves and its effect on the rotation of the solar interior. Astrophys. J. Lett. 475, 143鈥?46 (1997). doi:10.鈥?086/鈥?10477 ADS
    P. Kumar, S. Talon, J.-P. Zahn, Angular momentum redistribution by waves in the Sun. Astrophys. J. 520, 859鈥?70 (1999). doi:10.鈥?086/鈥?07464 ADS
    P.J. Ledoux, E. Sauvenier-Goffin, The vibrational stability of white dwarfs. Astrophys. J. 111, 611 (1950). doi:10.鈥?086/鈥?45305 ADS
    S. Lefebvre, A.G. Kosovichev, J.P. Rozelot, Helioseismic test of nonhomologous solar radius changes with the 11 year activity cycle. Astrophys. J. Lett. 658, 135鈥?38 (2007). doi:10.鈥?086/鈥?15394 ADS
    M.J. Lighthill, On sound generated aerodynamically. I. General theory. Proc. R. Soc. Lond. Ser. A 211, 564鈥?87 (1952). doi:10.鈥?098/鈥媟spa.鈥?952.鈥?060 MathSciNet ADS
    M.J. Lighthill, On sound generated aerodynamically. II. Turbulence as a source of sound. Proc. R. Soc. Lond. Ser. A 222, 1鈥?2 (1954). doi:10.鈥?098/鈥媟spa.鈥?954.鈥?049 MathSciNet ADS
    R.S. Lindzen, J.R. Holton, A theory of the quasi-biennial oscillation. J. Atmos. Sci. 25, 1095鈥?107 (1968). doi:10.鈥?175/鈥?520-0469(1968)025<1095:鈥婣TOTQB>2.鈥?.鈥婥O;2 ADS
    J.E. Lovelock, L. Margulis, Homeostatic tendencies of the Earth鈥檚 atmosphere. Orig. Life 5, 93鈥?03 (1974). doi:10.鈥?007/鈥婤F00927016 ADS
    J.E. Lovelock, A.J. Watson, The regulation of carbon dioxide and climate鈥擥aia or geochemistry. Planet. Space Sci. 30, 795鈥?02 (1982). doi:10.鈥?016/鈥?032-0633(82)90112-X ADS
    S.H. Lubow, E.J. Rhodes Jr., R.K. Ulrich, Five minute oscillations as a probe of the solar interior, in Nonradial and Nonlinear Stellar Pulsation, ed. by H.A. Hill, W.A. Dziembowski Lecture Notes in Physics, vol. 125 (Springer, Berlin, 1980), pp. 300鈥?06
    K.B. MacGregor, T.M. Rogers, Reflection and ducting of gravity waves inside the Sun. Sol. Phys. 270, 417鈥?36 (2011). doi:10.鈥?007/鈥媠11207-011-9771-0 ADS
    L. Margulis, J.E. Lovelock, Biological modulation of the Earth鈥檚 atmosphere. Icarus 21, 471 (1974). doi:10.鈥?016/鈥?019-1035(74)90150-X ADS
    P. Markey, R.J. Tayler, The adiabatic stability of stars containing magnetic fields. II. Poloidal fields. Mon. Not. R. Astron. Soc. 163, 77鈥?1 (1973). doi:10.鈥?093/鈥媘nras/鈥?63.鈥?.鈥?7 ADS
    S. Mathis, S. Talon, F.-P. Pantillon, J.-P. Zahn, Angular momentum transport in the Sun鈥檚 radiative zone by gravito-inertial waves. Sol. Phys. 251, 101鈥?18 (2008). doi:10.鈥?007/鈥媠11207-008-9157-0 ADS
    J.M. Matthews, R. Kuschnig, D.B. Guenther, G.A.H. Walker, A.F.J. Moffat, S.M. Rucinski, D. Sasselov, W.W. Weiss, Erratum: No stellar p-mode oscillations in space-based photometry of Procyon. Nature 430, 921 (2004a). doi:10.鈥?038/鈥媙ature02812 ADS
    J.M. Matthews, R. Kuschnig, D.B. Guenther, G.A.H. Walker, A.F.J. Moffat, S.M. Rucinski, D. Sasselov, W.W. Weiss, No stellar p-mode oscillations in space-based photometry of Procyon. Nature 430, 51鈥?3 (2004b). doi:10.鈥?038/鈥媙ature02671 ADS
    B.E. McDonald, R.H. Dicke, Solar oblateness and fluid spin-down. Science 158, 1562鈥?564 (1967). doi:10.鈥?126/鈥媠cience.鈥?58.鈥?808.鈥?562 ADS
    M.E. McIntyre, Solar tachocline dynamics: Eddy viscosity, anti-friction, or something in between? in Stellar Astrophysical Fluid Dynamics, ed. by M.J. Thompson, J. Christensen-Dalsgaard (2003), p. 111
    M.E. McIntyre, The Quasi-Biennial Oscillation (QBO): some points about the terrestrial QBO and the possibility of related phenomena in the solar interior, in The Solar Engine and its Influence on Terrestrial Atmosphere and Climate, ed. by E. Nesme-Ribes (1994), p. 293
    M.E. McIntyre, Magnetic confinement and the sharp tachopause, in The Solar Tachocline, ed. by D.W. Hughes, R. Rosner, N.O. Weiss (2007), p. 183
    L. Mestel, Stellar Magnetism, 2nd edn. (Oxford University Press, London, 2012)
    L. Mestel, Rotation and stellar evolution. Mon. Not. R. Astron. Soc. 113, 716 (1953) ADS
    L. Mestel, Meridional circulation in shell-source stars. Astrophys. J. 126, 550 (1957). doi:10.鈥?086/鈥?46429 MathSciNet ADS
    L. Mestel, N.O. Weiss, Magnetic fields and non-uniform rotation in stellar radiative zones. Mon. Not. R. Astron. Soc. 226, 123鈥?35 (1987) ADS
    M.S. Miesch, Numerical modeling of the solar tachocline. II. Forced turbulence with imposed shear. Astrophys. J. 586, 663鈥?84 (2003). doi:10.鈥?086/鈥?67616 ADS
    J.L. Modisette, J.E. Novotny, Buoyancy and solar spin-down. Science 166, 872鈥?74 (1969). doi:10.鈥?126/鈥媠cience.鈥?66.鈥?907.鈥?72 ADS
    A. Noels, M. Gabriel, A. Boury, R. Scuflaire, P. Ledoux, Vibrational stability of g+ modes towards non-radial oscillations for solar models. Mem. Soc. R. Sci. Liege 8, 317鈥?23 (1975) ADS
    F.P. Pijpers, Helioseismic determination of the solar gravitational quadrupole moment. Mon. Not. R. Astron. Soc. 297, 76鈥?0 (1998). doi:10.鈥?046/鈥媕.鈥?365-8711.鈥?998.鈥?1801.鈥媥 ADS
    R.A. Plumb, A.D. McEwan, The instability of a forced standing wave in a viscous stratified fluid: a laboratory analogue of the quasi-biennial oscillation. J. Atmos. Sci. 35, 1827鈥?839 (1978). doi:10.鈥?175/鈥?520-0469(1978)035<1827:鈥婽IOAFS>2.鈥?.鈥婥O;2 MathSciNet ADS
    C.L. Poor, The figure of the Sun. Astrophys. J. 22, 103 (1905a). doi:10.鈥?086/鈥?41245 ADS
    C.L. Poor, The figure of the Sun. II. Astrophys. J. 22, 305 (1905b). doi:10.鈥?086/鈥?41285 ADS
    W.H. Press, Radiative and other effects from internal waves in solar and stellar interiors. Astrophys. J. 245, 286鈥?03 (1981). doi:10.鈥?086/鈥?58809 MathSciNet ADS
    W.H. Press, G.B. Rybicki, Enhancement of passive diffusion and suppression of heat flux in a fluid with time varying shear. Astrophys. J. 248, 751 (1981). doi:10.鈥?086/鈥?59199 MathSciNet ADS
    E.J. Rhodes Jr., R.K. Ulrich, G.W. Simon, Observations of nonradial p-mode oscillations on the Sun. Astrophys. J. 218, 901鈥?19 (1977). doi:10.鈥?086/鈥?55745 ADS
    M.H. Ritzwoller, E.M. Lavely, A unified approach to the helioseismic forward and inverse problems of differential rotation. Astrophys. J. 369, 557鈥?66 (1991). doi:10.鈥?086/鈥?69785 ADS
    P.H. Roberts, An Introduction to Magnetohydrodynamics (Longmans, Green, New York, 1967)
    T.M. Rogers, K.B. MacGregor, On the interaction of internal gravity waves with a magnetic field鈥擨. Artificial wave forcing. Mon. Not. R. Astron. Soc. 401, 191鈥?96 (2010). doi:10.鈥?111/鈥媕.鈥?365-2966.鈥?009.鈥?5618.鈥媥 ADS
    T.M. Rogers, K.B. MacGregor, On the interaction of internal gravity waves with a magnetic field鈥擨I. Convective forcing. Mon. Not. R. Astron. Soc. 410, 946鈥?62 (2011). doi:10.鈥?111/鈥媕.鈥?365-2966.鈥?010.鈥?7493.鈥媥 ADS
    T.M. Rogers, K.B. MacGregor, G.A. Glatzmaier, Non-linear dynamics of gravity wave driven flows in the solar radiative interior. Mon. Not. R. Astron. Soc. 387, 616鈥?30 (2008). doi:10.鈥?111/鈥媕.鈥?365-2966.鈥?008.鈥?3289.鈥媥 ADS
    I.W. Roxburgh, Solar rotation and the perihelion advance of the planets. Icarus 3, 92鈥?7 (1964). doi:10.鈥?016/鈥?019-1035(64)90049-1 ADS
    G. R眉diger, L.L. Kitchatinov, The slender solar tachocline: a magnetic model. Astron. Nachr. 318, 273 (1997) ADS
    G. R眉diger, L.L. Kitchatinov, Structure and stability of the magnetic solar tachocline. New J. Phys. 9, 302 (2007). doi:10.鈥?088/鈥?367-2630/鈥?/鈥?/鈥?02
    C. Sagan, G. Mullen, Earth and Mars: evolution of atmospheres and surface temperatures. Science 177, 52鈥?6 (1972). doi:10.鈥?126/鈥媠cience.鈥?77.鈥?043.鈥?2 ADS
    H. Saio, Stability of nonradial g+-mode pulsations in 1 solar mass models. Astrophys. J. 240, 685鈥?92 (1980). doi:10.鈥?086/鈥?58275 ADS
    J. Schou, H.M. Antia, S. Basu, R.S. Bogart, R.I. Bush, S.M. Chitre, J. Christensen-Dalsgaard, M.P. di Mauro, W.A. Dziembowski, A. Eff-Darwich, D.O. Gough, D.A. Haber, J.T. Hoeksema, R. Howe, S.G. Korzennik, A.G. Kosovichev, R.M. Larsen, F.P. Pijpers, P.H. Scherrer, T. Sekii, T.D. Tarbell, A.M. Title, M.J. Thompson, J. Toomre, Helioseismic studies of differential rotation in the solar envelope by the solar oscillations investigation using the Michelson Doppler imager. Astrophys. J. 505, 390鈥?17 (1998). doi:10.鈥?086/鈥?06146 ADS
    J.A. Shercliff, A Textbook of Magnetohydrodynamics (Pergamon, Elmsford, 1965)
    H. Shibahashi, Y. Osaki, W. Unno, Nonradial g-mode oscillations and the stability of the Sun. Publ. Astron. Soc. Jpn. 27, 401鈥?10 (1975) ADS
    A. Skumanich, Time scales for CA II emission decay, rotational braking, and lithium depletion. Astrophys. J. 171, 565 (1972). doi:10.鈥?086/鈥?51310 ADS
    E.A. Spiegel, A history of solar rotation. NASA Spec. Publ. 300, 61 (1972) ADS
    E.A. Spiegel, J.-P. Zahn, The solar tachocline. Astron. Astrophys. 265, 106鈥?14 (1992) ADS
    H.C. Spruit, Differential rotation and magnetic fields in stellar interiors. Astron. Astrophys. 349, 189鈥?02 (1999) ADS
    H.C. Spruit, Dynamo action by differential rotation in a stably stratified stellar interior. Astron. Astrophys. 381, 923鈥?32 (2002). doi:10.鈥?051/鈥?004-6361:鈥?0011465 ADS
    R.F. Stein, Generation of acoustic and gravity waves by turbulence in an isothermal stratified atmosphere. Sol. Phys. 2, 385鈥?32 (1967). doi:10.鈥?007/鈥婤F00146490 ADS
    D. Stello, H. Kjeldsen, T.R. Bedding, D. Buzasi, Oscillation mode lifetimes in 尉 Hydrae: will strong mode damping limit asteroseismology of red giant stars? Astron. Astrophys. 448, 709鈥?15 (2006). doi:10.鈥?051/鈥?004-6361:鈥?0054016 ADS
    A. Strugarek, A.S. Brun, J.-P. Zahn, Magnetic confinement of the solar tachocline: II. Coupling to a convection zone. Astron. Astrophys. 532, 34 (2011a). doi:10.鈥?051/鈥?004-6361/鈥?01116518 ADS
    A. Strugarek, A.S. Brun, J.-P. Zahn, Magnetic confinement of the solar tachocline: the oblique dipole. Astron. Nachr. 332, 891 (2011b). doi:10.鈥?002/鈥媋sna.鈥?01111613 ADS
    P.A. Sturrock, Solar neutrino variability and its implications for solar physics and neutrino physics. Astrophys. J. Lett. 688, 53鈥?6 (2008). doi:10.鈥?086/鈥?94993 ADS
    L. Svalgaard, J.M. Wilcox, Long-term evolution of solar sector structure. Sol. Phys. 41, 461鈥?75 (1975). doi:10.鈥?007/鈥婤F00154083 ADS
    S. Talon, P. Kumar, J.-P. Zahn, Angular momentum extraction by gravity waves in the Sun. Astrophys. J. Lett. 574, 175鈥?78 (2002). doi:10.鈥?086/鈥?42526 ADS
    R.J. Tayler, Hydromagnetic instabilities of an ideally conducting fluid. Proc. Phys. Soc. B 70, 31鈥?8 (1957). doi:10.鈥?088/鈥?370-1301/鈥?0/鈥?/鈥?06 ADS
    R.J. Tayler, The adiabatic stability of stars containing magnetic fields鈥擨. Toroidal fields. Mon. Not. R. Astron. Soc. 161, 365 (1973) ADS
    G.I. Taylor, Dispersion of soluble matter in solvent flowing slowly through a tube. Proc. R. Soc. Lond. Ser. A 219, 186鈥?03 (1953). doi:10.鈥?098/鈥媟spa.鈥?953.鈥?139 ADS
    G.I. Taylor, The dispersion of matter in turbulent flow through a pipe. Proc. R. Soc. Lond. Ser. A 223, 446鈥?68 (1954). doi:10.鈥?098/鈥媟spa.鈥?954.鈥?130 ADS
    E. Teller, On the change of physical constants. Phys. Rev. 73, 801鈥?02 (1948). doi:10.鈥?103/鈥婸hysRev.鈥?3.鈥?01 ADS
    J. Toomre, M.J. Thompson, Prospects and challenges for helioseismology. Space Sci. Rev. (2015, this issue). doi:10.鈥?007/鈥媠11214-015-0147-x
    W. Unno, Stellar radial pulsation coupled with the convection. Publ. Astron. Soc. Jpn. 19, 140 (1967) ADS
    E.P. Velikhov, Stability of an ideally conducting liquid flowing between cylinders rotating in a magnetic field. Sov. Phys. JETP 36, 1398鈥?404 (1959)
    T.S. Wood, M.E. McIntyre, Polar confinement of the Sun鈥檚 interior magnetic field by laminar magnetostrophic flow. J. Fluid Mech. 677, 445鈥?82 (2011). doi:10.鈥?017/鈥媕fm.鈥?011.鈥?3 MathSciNet ADS
    D.-R. Xiong, Radiation-hydrodynamic equations for stellar oscillations. Astron. Astrophys. 209, 126鈥?34 (1989) ADS
    J.-P. Zahn, S. Talon, J. Matias, Angular momentum transport by internal waves in the solar interior. Astron. Astrophys. 322, 320鈥?28 (1997) ADS
  • 作者单位:D. O. Gough (1)

    1. Institute of Astronomy & Department of Applied Mathematics and Theoretical Physics, Madingley Road, Cambridge, CB3 0HA, UK
  • 刊物类别:Physics and Astronomy
  • 刊物主题:Physics
    Astronomy
    Extraterrestrial Physics and Space Sciences
    Astrophysics
    Planetology
  • 出版者:Springer Netherlands
  • ISSN:1572-9672
文摘
Helioseismology has taught us a great deal about the stratification and kinematics of the solar interior, sufficient for us to embark upon dynamical studies more detailed than have been possible before. The most sophisticated studies to date have been the very impressive numerical simulations of the convection zone, from which, especially in recent years, a great deal has been learnt. Those simulations, and the seismological evidence with which they are being confronted, are reviewed elsewhere in this volume. Our understanding of the global dynamics of the radiative interior of the Sun is in a much more primitive state. Nevertheless, some progress has been made, and seismological inference has provided us with evidence of more to come. Some of that I summarize here, mentioning in passing hints that are pointing the way to the future. Keywords Sun Helioseismology Dynamics

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