ION RADIAL DIFFUSION IN AN ELECTROSTATIC IMPULSE MODEL FOR STORMTIME RING CURRENT FORMATION

被引:17
作者
CHEN, MW
SCHULZ, M
LYONS, LR
GORNEY, DJ
机构
[1] Space and Environment Technology Center, Aerospace Corporation
关键词
D O I
10.1029/92GL00392
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Guiding-center simulations of stormtime transport of ring-current and radiation-belt ions having first adiabatic invariants mu greater-than-or-similar-to 15 MeV/G (E greater-than-or-similar-to 165 keV at L approximately 3) are surprisingly well described (typically within a factor of less-than-or-similar-to 4) by the quasilinear theory of radial diffusion. This holds even for the case of an individual model storm characterized by substorm-associated impulses in the convection electric field, provided that the actual spectrum of the electric field is incorporated in the quasilinear theory. Correction of the quasilinear diffusion coefficient D(LL)ql for drift-resonance broadening (so as to define D(LL)rb) reduced the typical discrepancy with the diffusion coefficients D(LL)sim deduced from guiding-center simulations of representative-particle trajectories to a factor approximately 3. The typical discrepancy was reduced to a factor approximately 1.4 by averaging D(LL)sim, D(LL)ql, and D(LL)rb over an ensemble of model storms characterized by different (but statistically equivalent) sets of substorm-onset times.
引用
收藏
页码:621 / 624
页数:4
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