Space Physics and Aeronomy, Solar Physics and Solar Wind. Группа авторов

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Space Physics and Aeronomy, Solar Physics and Solar Wind - Группа авторов

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T. S., Matteini, L., & Stansby, D. (2018, August). Short, large‐amplitude speed enhancements in the near‐Sunfast solar wind. Monthly Notices of the Royal Astronomical Society, 478, 1980–1986. doi: 10 .1093/mnras/sty953.

      104 Howes, G.G., Cowley, S.C., Dorland, W. et al. (2006, November). Astrophysical gyrokinetics: Basic equations and linear theory. The Astrophysical Journal 651: 590–614. https://doi.org/10.1086/506172.

      105 Howes, G.G., Tenbarge, J.M., Dorland, W. et al. (2011, July). Gyrokinetic simulations of solar wind turbulence from ion to electron scales. Physical Review Letters 107 (3): 035004. https://doi.org/10.1103/PhysRevLett.107.035004.

      106 Hudson, P.D. (1970, November). Discontinuities in an anisotropic plasma and their identification in the solar wind. Planetary and Space Science 18: 1611–1622. https://doi.org/10.1016/0032‐0633(70) 90036‐X.

      107 Hundhausen, A.J. and Gosling, J.T. (1976, March). Solar wind structure at large heliocentric distances – an interpretation of Pioneer 10 observations. Journal of Geophysical Research 81: 1436–1440. https://doi.org/10.1029/JA081i007p01436.

      108 Hyder, C.L. and Lites, B.W. (1970, September). Hα Doppler brightening and Lyman‐a Doppler dimming in moving Hα Prominences. Solar Physics 14: 147–156. https://doi.org/10.1007/BF00240170.

      109 Isenberg, P.A. (1987, February). Evolution of interstellar pickup ions in the solar wind. Journal of Geophysical Research 92: 1067–1073. https://doi.org/10.1029/JA092iA02p01067.

      110 Isenberg, P.A., Lee, M.A., and Hollweg, J.V. (2001, April). The kinetic shell model of coronal heating and acceleration by ion cyclotron waves: 1. Outward propagating waves. Journal of Geophysical Research: Space Physics 106: 5649–5660. https://doi.org/10.1029/2000JA000099.

      111 Jian, L., Russell, C.T., Luhmann, J.G., and Skoug, R.M. (2006, December). Properties of stream interactions at one AU during 1995 2004. Solar Physics 239: 337–392. https://doi.org/10.1007/s11207‐006‐0132‐3.

      112 Jian, L.K., Wei, H.Y., Russell, C.T. et al. (2014, May). Electromagnetic waves near the proton cyclotron frequency: STEREO observations. The Astrophysical Journal 786: 123. https://doi.org/10.1088/0004‐637X/786/2/123.

      113 Jovanović, D., Alexandrova, O., Maksimović, M., and Belic, M. (2020, June). Fluid Theory of Coherent Magnetic Vortices in High‐β Space Plasmas. The Astrophysical Journal 896 (1):8. https://doi.org/10.3847/1538‐4357/ab8a45.

      114 Kahler, S. and Lin, R.P. (1994, July). The determination of interplanetary magnetic field polarities around sector boundaries using E greater than 2 keV electrons. Geophysical Research Letters 21: 1575–1578. https://doi.org/10.1029/94GL01362.

      115 Kahler, S.W., Crooker, N.U., and Gosling, J.T. (1996, November). The topology of intrasector reversals of the interplanetary magnetic field. Journal of Geophysical Research 101: 24373–24382. https://doi.org/10.1029/96JA02232.

      116 Kajdič, P., Alexandrova, O., Maksimovic, M. et al. (2016a, December). Suprathermal electron Strahl widths in the presence of narrow‐band whistler waves in the solar wind. The Astrophysical Journal 833: 172. https://doi.org/10.3847/1538‐4357/833/2/172.

      117 Kajdič, P., Alexandrova, O., Maksimovic, M. et al. (2016b, December). Suprathermal electron strahl widths in the presence of narrow‐band whistler waves in the solar wind. The Astrophysical Journal 833: 172. https://doi.org/10.3847/1538‐4357/833/2/172.

      118 Karpen, J.T., DeVore, C.R., Antiochos, S.K., and Pariat, E. (2017, January). Reconnection‐driven coronal‐hole jets with gravity and solar wind. The Astrophysical Journal 834: 62. https://doi.org/10.3847/1538‐4357/834/1/62.

      119 Kasper, J.C., Stevens, M.L., Korreck, K.E. et al. (2012, February). Evolution of the relationships between helium abundance, minor ion charge state, and solar wind speed over the solar cycle. The Astrophysical Journal 745: 162. https://doi.org/10.1088/0004‐637X/745/2/162.

      120 Kennel, C.F. and Engelmann, F. (1966, December). Velocity space diffusion from weak plasma turbulence in a magnetic field. Physics of Fluids 9: 2377–2388. https://doi.org/10.1063/1.1761629.

      121 Kepko, L. and Spence, H.E. (2003, June). Observations of discrete, global magnetospheric oscillations directly driven by solar wind density variations. Journal of Geophysical Research: Space Physics 108: 1257. https://doi.org/10.1029/2002JA009676.

      122 Kepko, L., Spence, H.E., and Singer, H.J. (2002, April). ULF waves in the solar wind as direct drivers of magnetospheric pulsations. Geophysical Research Letters 29: 1197. https://doi.org/10.1029/ 2001GL014405.

      123 Kepko, L., Viall, N.M., Antiochos, S.K. et al. (2016, May). Implications of L1 observations for slow solar wind formation by solar reconnection. Geophysical Research Letters 43: 4089–4097. https://doi.org/10.1002/2016GL068607.

      124 Kilpua, E.K.J., Luhmann, J.G., Gosling, J. et al. (2009, May). Small solar wind transients and their connection to the large‐scale coronal structure. Solar Physics 256: 327–344. https://doi.org/10.1007/s11207‐009‐9366‐1.

      125 Kiyani, K.H., Chapman, S.C., Sahraoui, F. et al. (2013, January). Enhanced magnetic compressibility and isotropic scale invariance at sub‐ion Larmor scales in solar wind turbulence. The Astrophysical Journal 763: 10. https://doi.org/10.1088/0004‐637X/763/1/10.

      126 Kiyani, K. H., Osman, K. T., & Chapman, S. C. (2015). Dissipation and heating in solar wind turbulence: from the macro to the micro and back again. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 373(2041), 20140155. doi: https://doi.org/10.1098/rsta.2014.01550.

      127 Ko, Y.‐K., Muglach, K., Wang, Y.‐M., Young, P. R., & Lepri, S. T. (2014). Temporal evolution of solar wind ion composition and their source coronal holes during the declining phase of cycle 23. I. Low‐latitude extension of polar coronal holes. The Astrophysical Journal, 787(2), 121.

      128 Kohl, J.L., Esser, R., Gardner, L.D. et al. (1995, December). The ultraviolet coronagraph spectrometer for the solar and heliospheric observatory. Solar Physics 162: 313–356. https://doi.org/10.1007/BF00733433.

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