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Ion radial diffusion in an electrostatic impulse model for stormtime ring current formation

机译:静电脉冲模型中的离子径向扩散以形成风暴时间环电流

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摘要

Guiding-center simulations of stormtime transport of ring-current and radiation-belt ions having first adiabatic invariants mu is approximately greater than 15 MeV/G (E is approximately greater than 165 keV at L is approximately 3) are surprisingly well described (typically within a factor of approximately less than 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(sub LL)(sup ql) for drift-resonance broadening (so as to define D(sub LL)(sup ql)) reduced the typical discrepancy with the diffusion coefficients D(sub LL)(sup sim) deduced from guiding-center simulations of representative-particle trajectories to a factor of approximately 3. The typical discrepancy was reduced to a factor of approximately 1.4 by averaging D(sub LL)(sup sim), D(sub LL)(sup ql), and D(sub LL)(sup rb) over an ensemble of model storms characterized by different (but statistically equivalent) sets of substorm-onset times.
机译:令人惊讶地很好地描述了具有第一个绝热不变量mu的环流和辐射带离子的暴风雨时间传输的制导中心模拟,其mu大约大于15 MeV / G(在L处E大约大于165 keV,大约为3)。根据径向扩散的拟线性理论,该因子大约小于4)。即使在对流电场中以亚暴相关脉冲为特征的单个模型风暴的情况下,这也适用,只要将电场的实际频谱纳入准线性理论中即可。准线性扩散系数D(sub LL)(sup ql)的校正用于漂移共振展宽(以便定义D(sub LL)(sup ql))减少了典型的差异,扩散系数D(sub LL)(sup ql) sim)从代表性粒子轨迹的引导中心模拟推导到大约3倍。通过平均D(sub LL)(sup sim),D(sub LL)(sup)对典型差异减小到大约1.4倍。 ql)和D(sub LL)(sup rb)上的一组模型风暴,其特征在于不同的(但在统计上是等效的)亚暴雨发生时间集。

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