Enhancement of High Energy Electron Fluxes and Variation of Atmospheric Electric Field in the Antarctic Region ormalsize
Author:
Publisher
National Space Science Center, Chinese Academy of Sciences
Subject
General Medicine
Reference30 articles.
1. FARRELL W M, DESCH M D. Solar proton events and the fair weather electric field at ground[J]. Geophys. Res. Lett., 2002, 29(9):37-1-4
2. HOLZWORTH R H, MOZER F S. Direct evidence of solar-flare modification of stratospheric electric-fields[J]. J. Geophys. Res. Ocean. Atmos., 1979, 84(Nc1):363-367
3. REAGAN J B, MEYEROTT R E, EVANS J E, et al. The effects of energetic particle-precipitation on the atmospheric electric-circuit[J]. J. Geophys. Res. Oce. Atmos., 1983, 88(Nc6):3869-3878
4. FRANK-KAMENETSKY A V, TROSHICHEV O A, BURNS G B, et al. Variations of the atmospheric electric field in the near-pole region related to the interplanetary magnetic field[J]. J. Geophys. Res. Space Phys., 2001, 106(A1):179-190
5. TINSLEY B A. Influence of solar wind on the global electric circuit, and inferred effects on cloud microphysics, temperature, and dynamics in the troposphere[J]. Space Sci. Rev., 2000, 94(1-2):231-258
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