|
Alexander, C. J.; Neugebauer, M.; Smith, E. J.; Bame, S. J., Sixth International Solar Wind Conference, Proceedings of the conference held 23-28 August, 1987 at YMCA of the Rockies, Estes Park, Colorado. Edited by V.J. Pizzo, T. Holzer, and D.G. Sime, Volume 2, 341, 1987.
Alfvén, H., On the origin of the solar system, Clarendon Press, Oxford, 1954.
Amagishi, Y.; Tanaka, M., Ion-neutral collision effect on an Alfven wave, Phys. Rev. Lett. 71, 360, 1993.
Arber, T. D.; Haynes, M.; Leake, J. E., Emergence of a flux tube through a partially ionized solar atmosphere, The Astrophy. J., 666 (1), 541, 2007.
Biernat, Helfried K.; Heyn, Martin F.; Rijnbeek, Richard P.; Semenov, Vladimir; Farrugia, Charles J., The structure of reconnection layers - Application to the earth's magnetopause, J. Geophys. Res., 94, 287, 1989.
Braginskii, S. I., Transport Processes in a Plasma, Rev. Plasma Phys., 1, 205, 1956.
Burlaga, L. F., Hydromagnetic waves and discontinuities in the solar wind, Space Sci. Revs., 12 (5), 600, 1971.
Carbonell, M.; Forteza, P.; Oliver, R.; Ballester, J. L., The spatial damping of magnetohydrodynamic waves in a flowing partially ionised prominence plasma, A & A, 515, A80, 2010.
Chao, J. K.; O., Stanislaw, Observation of slow shocks in interplanetary space, J. Geophys. Res., 75 (31), 6394, 1970.
Davis, M. S., T. D. Phan, J. T. Gosling, and R. M. Skoug, Detection of oppositely directed reconnection jets in a solar wind current sheet, Geophys. Res. Lett., 33, L19102, 2006.
De Pontieu, B.; Haerendel, G., Weakly damped Alfvén waves as drivers for spicules, A & A, 338, 729, 1998.
De Pontieu, B.; Martens, P. C. H.; Hudson, H. S., Chromospheric damping of Alfvén waves, The Astrophy. J., 558 (2), 859, 2001.
Ebadi, H.; Hosseinpour, M.; Altafi-Mehrabani, H., Phase mixing of propagating Alfvén waves in a stratified atmosphere: solar spicules, Astrophy. & Space Sci., 340 (1), 9, 2012.
Erdélyi, R.; James, S. P., Can ion-neutral damping help to form spicules?. II. Random driver, A & A, 427, 1055, 2004.
Eriksson, S., M. Øieroset, D. N. Baker, C. Mouikis, A. Vaivads, M. W. Dunlop, H. Réme, R. E. Ergun, and A. Balogh, Walén and slowmode shock analyses in the near-Earth magnetotail in connection with a substorm onset on 27 August 2001, J. Geophys. Res., 109, A10212, 2004.
Evans, R. M.; Opher, M.; Jatenco-Pereira, V.; Gombosi, T. I., Surface Alfvén wave damping in a three-dimensional simulation of the solar wind, The Astrophy. J., 703 (1), 179, 2009.
Feldman, W.C., Bame, S.J., Baker, D.N., Birn, J., Gosling, J.T., Hones, E.W., McComas, D.J., Zwickl, R.D., Schwartz, S.J., Slavin, J.A. and Smith, E.J. , Evidence for slow-mode shocks in the deep geomagnetic tail, Geophys. Res. Lett., 11, 599, 1984.
Feldman, W. C., D. N. Baker, S. J. Bame, J. Birn, E. W. Hones Jr., S. J. Schwartz, and R. L. Tokar, Power dissipation at slow-mode shocks in the distant geomagnetic tail, Geophys. Res. Lett., 11, 1058, 1984.
Feldman, W. C., D. N. Baker, S. J. Bame, J. Birn, J. T. Gosling, E. W. Hones Jr., and S. J. Schwartz, Slow-mode shocks: A semipermanent feature of the distant geomagnetic tail, J. Geophys. Res., 90, 233, 1985.
Feldman,W. C., R. L. Toker, J. Birn, E. W. Hones Jr., S. K. Bame, and C. T. Russell , Structure of a slow mode shock observed in the plasma sheet boundary layer, J. Geophys. Res., 92, 83, 1987.
Forteza, P.; Oliver, R.; Ballester, J. L.; Khodachenko, M. L., Damping of oscillations by ion-neutral collisions in a prominence plasma, A & A, 461 (2), 731, 2007.
Forteza, P.; Oliver, R.; Ballester, J. L., Time damping of non-adiabatic MHD waves in an unbounded partially ionised prominence plasma, A & A, 492 (1), 223, 2008.
Goedbloed, J. P. Hans; Poedts, Stefaan, Principles of Magnetohydrodynamics, Cambridge University Press, 2004.
Goodman, Michael L., On the mechanism of chromospheric network heating and the condition for its onset in the sun and other solar-type stars, The Astrophy. J., 533 (1), 501, 2000.
Goodman, Michael L., The necessity of using realistic descriptions of transport processes in modeling the solar atmosphere, and the importance of understanding chromospheric heating, Space Sci. Revs., 95 (1/2), 79, 2001.
Gordon, B. E.; Hollweg, J. V., Collisional damping of surface waves in the solar corona, The Astrophy. J., Part 1, 266, 373, 1983.
Gosling, J. T., R. M. Skoug, D. K. Haggerty, and D. J. McComas, Absence of energetic particle effects associated with magnetic reconnection exhausts in the solar wind, Geophys. Res. Lett., 32, L14113, 2005.
Gosling, J. T., S. Eriksson, R. M. Skoug, D. J. McComas, and R. J. Forsyth, Petschek-type reconnection exhausts in the solar wind well beyond 1 AU: Ulysses, The Astrophy. J., 644, 613, 2006.
Gosling, J. T., S. Eriksson, T. D. Phan, D. E. Larson, R. M. Skoug, and D. J. McComas, Direct evidence for prolonged magnetic reconnection at a continuous x-line within the heliospheric current sheet, Geophys. Res. Lett., 34, L06102, 2007.
Cranmer, Steven R.; van Ballegooijen, Adriaan A.; Edgar, Richard J., Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence, The Astrophy. J. S. S., 171 (2), 520, 2007.
Haerendel, G., Weakly damped Alfvén waves as drivers of solarchromospheric spicules, Nature, 360 (6401), 241, 1992. Hartmann, L.; MacGregor, K. B., Momentum and energy deposition in late-type stellar atmospheres and winds, The Astrophy. J., Part 1, 242, 260, 1980.
Hau, L. N. and Hung, C. C., Formation of anomalous slow shocks in anisotropic plasmas, Geophys. Res. Lett., 32 (14), L14103, 2005.
Heyvaerts, J.; Priest, E. R., Coronal heating by phase-mixed shear Alfvén waves, A & A, 117 (2), 220, 1983.
Higashimori, K., and M. Hoshino, The relation between ion temperature anisotropy and formation of slow shocks in collisionless magnetic reconnection, J. Geophys. Res., 117, A01220, 2012.
Ho, C. M., B. T. Tsurutani, E. J. Smith, andW. C. Feldman, A detailed examination of a X-line region in the distant tail: ISEE-3 observations of jet flow and Bz reversals and a pair of slow shocks, Geophys. Res. Lett., 21, 3031, 1994.
Hollweg, Joseph V., Nonlinear Landau damping of Alfvén waves, Phy. Re. Lett., 27 (20), 1349, 1971.
Hollweg, J. V., Transition region, corona, and solar wind in coronal holes, J. Geophys. Res.,91, 4111, 1986.
Hoshino, M., T. Mukai, I. Shinohara, Y. Saito, and S. Kokubun, Slow shock downstream structure in the magnetotail, J. Geophys. Res., 105, 337, 2000.
Huang, L.; Lee, L. C.; Whang, Y. C., Magnetohydrodynamic waves and instabilities in the heat-conducting solar wind plasma, Planet. & Space Sci., 36, 775, 1988.
Hung, C. C., L.-N. Hau and M. Hoshino, Magnetic reconnection in anisotropic plasmas: Observation and theory, Geophys. Res. Lett., in press, 2011.
Isenberg, Philip A.; Lee, Martin A.; Hollweg, Joseph V., The kinetic shell model of coronal heating and acceleration by ion cyclotron waves: 1. Outward propagating waves, J. Geophys. Res., 106 (A4), 5649, 2001.
Isenberg, Philip A.; Vasquez, Bernard J., A kinetic model of solar wind generation by oblique ion-cyclotron waves, The Astrophy. J., 731 (2), 88, 2011.
James, S. P.; Erdélyi, R., Spicule formation by ion-neutral damping, A & A, 393, L11, 2002.
James, S. P.; Erdélyi, R.; De Pontieu, B., Can ion-neutral damping help to form spicules?, A & A, 406, 715, 2003.
Khodachenko, M. L.; Arber, T. D.; Rucker, H. O.; Hanslmeier, A., Collisional and viscous damping of MHD waves in partially ionized plasmas of the solar atmosphere, A & A, 422, 1073, 2004.
Khodachenko, M. L.; Rucker, H. O., Solar plasma theoretical models for STEREO and Solar-B, Adv.Space Res., 36 (8), 1561, 2005.
Krauss-Varban, D.; Karimabadi, H.; N. Omidi, Kinetic structure of rotational discontinuities: Implications for the magnetopause, J. Geophys. Res., 100, 11981, 1995.
Kulsrud, Russell; Pearce, William P., The effect of wave-particle interactions on the propagation of cosmic rays, The Astrophy. J., 156, 445, 1969.
Kulsrud R. M., Basic plasma physics (Edited by Rosenbluth, M. N. and Sagdeev R. Z.), 1, 144, 1983.
Kumar, Nagendra; Roberts, B., Ion-neutral collisions effect on MHD surface waves, Solar Phy., 214 (2), 241, 2003.
Landau and Lifshitz, Course of theoretical physics, 1960.
Lazar, M.; Spanier, F.; Schlickeiser, R., Linear damping and energy dissipation of shear Alfvén waves in the interstellar medium, A & A, 410, 415, 2003.
Leake, J. E.; Arber, T. D.; Khodachenko, M. L., Collisional dissipation of Alfvén waves in a partially ionised solar chromosphere, A & A, 442(3),1091, 2005.
Leake, J. E.; Arber, T. D., The emergence of magnetic flux through a partially ionised solar atmosphere, A & A, 450 (2), 805, 2006.
Lee, L. C.; Kan, J. R., Structure of the magnetopause rotational discontinuity, J. Geophys. Res., 87, 139, 1982.
Lee, L. C.; Lin, Y.; Shi, Y.; Tsurutani, B. T., Slow shock characteristics as a function of distance from the X-line in the magnetotail, Geophys. Res. Lett., 16, 903, 1989.
Lee,L. C.; Huang L.; Chao, J. K., On the stability of rotational discontinuities and intermediate shocks, J. Geophys. Res., 94, 8813, 1989.
Lee, L. C., Wu, B. H., Chao, J. K., Lin, C. H. and Li, Y., Formation of a compound slow shock-rotational discontinuity structure, J. Geophys. Res., 105 (A6), 13045, 2000.
Lee, L. C.; Wu, B. H., Heating and acceleration of protons and minor ions by fast shocks in the solar corona, The Astrophy. J., 535 (2), 1014, 2000.
Lehnert, B., Plasma physics on cosmical and laboratory scale, Nuovo Cimento Suppl., 13, 59, 1959.
Lehnert, B., On the conditions for cosmic grain formation, From Plasma to Planet, Wiley Interscience Division, 111, 1972.
Lepping, R. P.; Behannon, K. W., Magnetic field directional discontinuities. I – Minimum variance errors, J. Geophys. Res., 85, 4695, 1980.
Lin, Y. and Lee, L. C., Chaos and ion heating in a slow shock, Geophys. Res. Lett., 18, 1615, 1991.
Lin, Y. and Lee, L. C., Structure of Reconnection Layers in the Magnetosphere, Space Sci. Rev., 65, 59, 1994.
Lin, Y. and Lee, L. C., Reconnection layer at the flank magnetopause in the presence of shear flow, Geophys. Res. Lett., 21, 855, 1994.
Lin, Y.; Lee, L. C., Simulation study of the Riemann problem associated with the magnetotail reconnection, J. Geophys. Res., 100 (A10), 19227, 1995.
Liu, Yi-Hsin, Drake, J. F. and Swisdak, M., The effects of strong temperature anisotropy on the kinetic structure of collisionless slow shocks and reconnection exhausts. I. Particle-in-cell simulations, Phys. Plasmas, 18 (6), 062110, 2011.
Liu, Yi-Hsin; Drake, J. F.; Swisdak, M., The effects of strong temperature anisotropy on the kinetic structure of collisionless slow shocks and reconnection exhausts. II. Theory, Phy. Plasmas, 18 (9), 092102, 2011.
Liu, Yi-Hsin; Drake, J. F.; Swisdak, M., The Structure of the Magnetic Reconnection Exhaust Boundary, Phys. Plasmas, 19, 022110, 2012.
Matthaeus, W. H.; Zank, G. P.; Oughton, S.; Mullan, D. J.; Dmitruk, P., Coronal Heating by Magnetohydrodynamic Turbulence Driven by Reflected Low-Frequency Waves, The Astrophy. J., 523 (1), L93, 1999.
Nakariakov, V. M.; Verwichte, E.; Berghmans, D.; Robbrecht, E., Slow magnetoacoustic waves in coronal loops, A & A, 362, 1151, 2000.
Narain, U.; Ulmschneider, P., Chromospheric and Coronal Heating Mechanisms II, Space Sci. Revs., 75, (3-4), 453, 1996.
Neugebauer, M.; Clay, D. R.; Goldstein, B. E.; Tsurutani, B. T.; Zwickl, R. D., A reexamination of rotational and tangential discontinuities in the solar wind, J. Geophys. Res., 89, 5395, 1984.
Neugebauer, M., The structure of rotational discontinuities, Geophys. Res. Lett., 16, 1261, 1989.
Ofman, L.; Davila, J. M., Solar wind acceleration by large-amplitude nonlinear waves: Parametric study, J. Geophys. Res., 103 (A10), 23677, 1998.
Ofman, L., Chromospheric Leakage of Alfvén Waves in Coronal Loops, The Astrophy. J., 568 (2), L135, 2002.
Omidi, N.; Winske, D., Kinetic structure of slow shocks - Effects of the electromagnetic ion/ion cyclotron instability, J. Geophys. Res., 97 (A10), 14,801, 1992.
Osterbrock, Donald E., The Heating of the Solar Chromosphere, Plages, and Corona by Magnetohydrodynamic Waves, The Astrophy. J., 134, 347, 1961. Parker, E. N., The phase mixing of Alfven waves, coordinated modes, and coronal heating, The Astrophy. J., Part 1, 376, 355, 1991.
Petschek, H. E., The Physics of Solar Flares, Proceedings of the AAS-NASA, Greenbelt, MD. Edited by Wilmot N. Hess. Washington, DC: National Aeronautics and Space Administration, Science and Technical Information Division, 425, 1964.
Roberts, B., Wave propagation in a magnetically structured atmosphere. I – Surface waves at a magnetic interface, Solar Phy., 69, 27, 1981.
Roberts, B., In Advances in Solar System Magnetohydrodynamics, eds. E. R. Priest and A. W. Hood, Cambridge University Press, 1991.
Phan, T. D.; Gosling, J. T.; Davis, M. S.; Skoug, R. M.; Øieroset, M.; Lin, R. P.; Lepping, R. P.; McComas, D. J.; Smith, C. W.; Reme, H.; Balogh A.; , A magnetic x-line extending more than 390 Earth radii in the solar wind, Nature, 439, 175, 2006.
Piddington, J. H., Electromagnetic field equations for a moving medium with Hall conductivity, Mon. Not. Roy. Astron. Soc., 114, 638, 1954.
Piddington, J. H., The motion of ionized gas in combined magnetic, electric and mechanical fields of force, Mon. Not. Roy. Astron. Soc., 114, 651, 1954.
Piddington, J. H., Solar atmospheric heating by hydromagnetic waves, Mon. Not. Roy. Astron. Soc., 116, 314, 1956.
Piddington, J. H., Some effects of hydromagnetic waves in the solar atmosphere, Electromagnetic phenomena in cosmical phys. (Ed. B. Lehnert, Camb. Uni. Press), 141, 1958.
Pinto, C.; Verdini, A.; Galli, D.; Velli, M., Reflection and dissipation of Alfvén waves in interstellar clouds, A & A, 544, A66, 2012.
Saito, Y., T. Mukai, T. Terasawa, A. Nishida, S. Machida, M. Hirahara, K. Maezawa, S. Kokubun, and T. Yamamoto, Slow-mode shocks in the magnetotail, J. Geophys. Res., 100 (23), 567, 1995.
Saito, Y., T. Mukai, and T. Terasawa, Kinetic structure of the slow-mode shocks in the Earth’s magnetotail, in New Perspectives on the Earth’s Magnetotail, edited by A. Nishida, D. N. Baker, and S.W. Cowley, Geophys. Monogr. Ser., 105, 103, 1998.
Seon, J., L. A. Frank, W. R. Paterson, J. D. Scudder, F. V. Coroniti, S. Kokubun, and T. Yamamoto, Observations of a slow-mode shock at the lobe-plasma sheet boundary in Earth’s distant magnetotail, Geophys. Res. Lett., 22, 2981, 1995.
Smith, E. J., J. A. Slavin, B. T. Tsurutani, W. C. Feldman, and S. J. Bame, Slow mode shocks in the Earth’s magnetotail: ISEE-3, Geophys. Res. Lett., 11, 1054, 1984.
Soler, R.; Oliver, R.; Ballester, J. L., Resonantly Damped Kink Magnetohydrodynamic Waves in a Partially Ionized Filament Thread, The Astrophy. J., 707 (1), 662, 2009.
Soler, R.; Oliver, R.; Ballester, J. L., Magnetohydrodynamic Waves in a Partially Ionized Filament Thread, The Astrophy. J., 699 (2), 1553, 2009.
Soler, R.; Oliver, R.; Ballester, J. L., Time damping of non-adiabaticmagnetohydrodynamic waves in a partially ionized prominence plasma: effect of helium, A & A, 512, A28, 2010.
Sterling, A. C.; Hollweg, J. V., Alfvénic resonances on solar spicules, The Astrophy. J., Part 1, 285, 843, 1984.
Suzuki, M.; Sakai, J. I., Nonlinear Alfven Waves Associated with Filament Currents in Weakly Ionized Plasmas, The Astrophy. J., 465, 393, 1996.
Swanson, D. G., Plasma waves, 434, ISBN 0-12-678955-X, 1989.
Swift, D. W., A two-dimensional simulation of the interaction of the plasma sheet with the lobes of the earth's magnetotail, J. Geophys. Res., 88, 125, 1983.
Swift, D. W., On the structure of the magnetic slow switch-off shock, J. Geophys. Res., 88, 5685, 1983.
Swift, D. W. and Lee, L. C., Rotational discontinuities and the structure of the magnetopause, J. Geophys. Res., 88, 111, 1983.
Tsai, C. L.; Lee, L. C.; Wu, B. H., Effects of a guide field on the evolution of a current sheet, Phys. Plasmas, 13 (10), 102902, 2006.
Tsai, C. L., Chen, H. H., Wu, B. H. and Lee, L. C., Structure of fast shocks in the presence of heat conduction, Phys. Plasmas, 14 (12), 122903, 2007.
Tsiklauri, D.; Nakariakov, V. M., Wide-spectrum slow magnetoacoustic waves in coronal loops, A. & A., 379, 1106, 2001.
Tsurutani, B. T., Slavin, J. A., Smith, E. J., Jones, D. E. and Sibeck, D. G., Plasma sheet magnetic fields in the distant tail, Geophys. Res. Lett., 11, 1062, 1984.
Uberoi, C. & Datta, A., Ion–neutral collision effects on Alfvén surface waves, Phys. Plasmas, 5, 4149, 1998.
Vranjes, J.; Poedts, S.; Pandey, B. P.; De Pontieu, B., Energy flux of Alfvén waves in weakly ionized plasma, A. & A., 478 (2), 553, 2008.
Wentzel, Donat G., Magnetohydrodynamic wave conversion and solar-wind acceleration in coronal holes, The Astrophy. J., Part 1, 336, 1073, 1989.
Whang, Y. C., J. Zhou, R. P. Lepping, and K. W. Ogilvie, Interplanetary slow shock observed from Wind, Geophys. Res. Lett., 23 (10), 1239, 1996.
Whang, Y. C., Fairfield, D., Smith, E. J., Lepping, R. P., Kokubun, S. and Saito, Y., Observations of double discontinuities in the magnetotail, Geophys. Res. Lett., 24 (24), 3153. 1997.
Whang, Y. C., Zhou, J., Lepping, R. P., Szabo, A., Fairfield, D., Kokubun, S., Ogilvie, K. W. and Fitzenreiter, R., Double discontinuity: A compound structure of slow shock and rotational discontinuity, J. Geophys. Res., 103 (A4), 6513, 1998.
Whang, Y. C., Fairfield, D., Lepping, R. P., Mukai, T., Saito, Y., Slavin, J. and Szabo, Double discontinuities at the magnetotail plasma sheet-lobe boundary, Ann. Geophys., 19 (9), 1095, 2001.
Winske, D.; Stover, E. K.; Gary, S. P., The structure and evolution of slow mode shocks, J. Geophys. Res., 12, 295, 1985.
Wu, B. H., and L. C. Lee, Hall effects on the Walén relation in rotational discontinuities and Alfven waves, J. Geophys. Res., 105, 18377, 2000.
Yong, S.; Lee, L. C., Structure of the reconnection layer at the dayside magnetopause, P & S S, 38 (3), 437, 1990.
Zaqarashvili, T. V.; Khodachenko, M. L.; Rucker, H. O., Magnetohydrodynamic waves in solar partially ionized plasmas: two-fluid approach, A & A, 529, A82, 2011.
Zaqarashvili, T. V.; Khodachenko, M. L.; Rucker, H. O., Damping of Alfvén waves in solar partially ionized plasmas: effect of neutral helium in multi-fluid approach, A & A, 534, A93, 2011.
Zuo, P. B. and Feng, X. S., The Plasma and Magnetic Field Characteristics of a Double Discontinuity in Interplanetary Space, Sol. Phys., 240 (2), 347, 2007.
Zweibel, Ellen G., Magnetic reconnection in partially ionized gases, The Astrophy. J., Part 1, 340, 550, 1989.
|