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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E. et al. (1998, July). UVCS/SOHO empirical determinations of anisotropic velocity distributions in the solar corona. The Astrophysical Journal 501: L127–L131. https://doi.org/10.1086/311434.

      130 Kohl, J.L., Noci, G., Antonucci, E. et al. (1997, October). First results from the SOHO ultraviolet coronagraph spectrometer. Solar Physics 175: 613–644. https://doi.org/10.1023/A:1004903206467.

      131 Lacombe, C., Alexandrova, O., and Matteini, L. (2017, October). Anisotropies of the magnetic field fluctuations at kinetic scales in the solar wind: cluster observations. The Astrophysical Journal 848: 45. https://doi.org/10.3847/1538‐4357/aa8c06.

      132 Lacombe, C., Alexandrova, O., Matteini, L. et al. (2014, November). Whistler mode waves and the electron heat flux in the solar wind: Cluster observations. The Astrophysical Journal 796: 5. https://doi.org/10.1088/0004‐637X/796/1/5.

      133 Laming, J.M. (2009, April). Non‐Wkb models of the first ionization potential effect: Implications for solar coronal heating and the coronal helium and neon abundances. The Astrophysical Journal 695: 954–969. https://doi.org/10.1088/0004‐637X/695/2/954.

      134 Laming, J.M. (2015, September). The FIP and inverse FIP effects in solar and stellar coronae. Living Reviews in Solar Physics 12: 2. https://doi.org/10.1007/lrsp‐2015 ‐2.

      135 Lavraud, B., Gosling, J.T., Rouillard, A.P. et al. (2009, May). Observation of a complex solar wind reconnection exhaust from spacecraft separated by over 1800 R E. Solar Physics 256: 379–392. https://doi.org/10.1007/s11207‐009‐9341‐x.

      136 Lavraud, B., Ruffenach, A., Rouillard, A.P. et al. (2014, January). Geo‐effectiveness and radial dependence of magnetic cloud erosion by magnetic reconnection. Journal of Geophysical Research: Space Physics 119: 26–35. https://doi.org/10.1002/2013JA019154.

      137 Lazar, M., Yoon, P.H., López, R.A., and Moya, P.S. (2018, January). Electromagnetic electron cyclotron instability in the solar wind. Journal of Geophysical Research: Space Physics 123: 6–19. https://doi.org/10.1002/2017JA024759.

      138 Leamon, R.J., Smith, C.W., Ness, N.F. et al. (1998, March). Observational constraints on the dynamics of the interplanetary magnetic field dissipation range. Journal of Geophysical Research Atmospheres 103: 4775. https://doi.org/10.1029/97JA03394.

      139 Lee, M.A. (2000, May). An analytical theory of the morphology, flows, and shock compressions at corotating interaction regions in the solar wind. Journal of Geophysical Research 105: 10491–10500. https://doi.org/10.1029/1999JA000327.

      140 Leubner, M.P. and Vörös, Z. (2005, January). A nonextensive entropy approach to solar wind intermittency. The Astrophysical Journal 618: 547–555. https://doi.org/10.1086/425893.

      141 Lin, R.P. (1974, June). Non‐relativistic solar electrons. Space Science Reviews 16: 189–256. https://doi.org/10.1007/ BF00240886.

      142 Lin, R.P. (1998, July). WIND observations of suprathermal electrons in the interplanetary medium. Space Science Reviews 86: 61–78. https://doi.org/10.1023/A:1005048428480.

      143 Linker, J.A., Lionello, R., Mikić, Z. et al. (2011, April). The evolution of open magnetic flux driven by photospheric dynamics. The Astrophysical Journal 731: 110. https://doi.org/10.1088/0004‐637X/731/2/110.

      144 Lion, S., Alexandrova, O., and Zaslavsky, A. (2016, June). Coherent events and spectral shape at ion kinetic scales in the fast solar wind turbulence. The Astrophysical Journal 824: 47. https://doi.org/10.3847/0004‐637X/824/1/47.

      145 Lionello, R., Riley, P., Linker, J.A., and Mikić, Z. (2005, May). The effects of differential rotation on the magnetic structure of the solar corona: Magnetohydrodynamic simulations. The Astrophysical Journal 625: 463–473. https://doi.org/10.1086/429268.

      146 Lionello, R., Velli, M., Downs, C. et al. (2014, April). Validating a Time‐dependent Turbulence‐driven Model of the Solar Wind. The Astrophysical Journal 784: 120. https://doi.org/10.1088/0004‐637X/784/2/120.

      147 Liou, K., Takahashi, K., Newell, P.T., and Yumoto, K. (2008, August). Polar Ultraviolet Imager observations of solar wind‐driven ULF auroral pulsations. Geophysical Research Letters 35: L16101. https://doi.org/10.1029/2008GL034953.

      148 Liu, Y.C.‐M., Huang, J., Wang, C. et al. (2014, November). A statistical analysis of heliospheric plasma sheets, heliospheric current sheets, and sector boundaries observed in situ by STEREO. Journal of Geophysical Research: Space Physics 119: 8721–8732. https://doi.org/10.1002/2014JA019956.

      149 Lockwood, M., Owens, M., & Rouillard, A. P. (2009a, November). Excess open solar magnetic flux from satellite data: 1. Analysis of the third perihelion Ulysses pass. Journal of Geophysical Research: Space Physics, 114 (A11), A11103. doi: 10.1029/2009JA014449.

      150 Lockwood, M., Owens, M., & Rouillard, A. P. (2009b, November). Excess open solar magnetic flux from satellite data: 2. A survey of kinematic effects. Journal of Geophysical Research: Space Physics, 114 (A11), A11104. doi: 10.1029/2009JA014450.

      151 Lopez, R.E., Freeman, J.W., and Roelof, E.C. (1986, July). The relationship between proton temperature and momentum flux density in the solar wind. Geophysical Research Letters 13: 640–643. https://doi.org/10.1029/GL013i007p00640.

      152 Maksimovic, M., Gary, S.P., and Skoug, R.M. (2000, August). Solar wind electron suprathermal strength and temperature gradients: Ulysses observations. Journal of Geophysical Research: Space Physics 105: 18337–18350. https://doi.org/10.1029/2000JA900039.

      153 Maksimovic, M., Pierrard, V., and Riley, P. (1997). Ulysses electron distributions fitted with Kappa functions. Geophysical Research Letters 24: 1151–1154. https://doi.org/10.1029/97GL00992.

      154 Manchester, W.B., Kozyra, J.U., Lepri, S.T., and Lavraud, B. (2014, July). Simulation of magnetic cloud erosion during propagation. Journal of Geophysical Research: Space Physics 119 (7): 5449–5464. https://doi.org/10.1002/2014JA019882.

      155 Manchester, W.B., van der Holst, B., and Lavraud, B. (2014, March). Flux rope evolution in interplanetary coronal mass ejections: The 13 May 2005 event.

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