首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The effects of transient, localized electric fields on equatorial electron acceleration and transport toward the inner magnetosphere
【24h】

The effects of transient, localized electric fields on equatorial electron acceleration and transport toward the inner magnetosphere

机译:瞬态的影响,局部电在赤道电子加速和字段运输向内部磁气圈

获取原文
获取原文并翻译 | 示例
           

摘要

Motivated by recent observations of intense electric fields and elevated energetic particle fluxes within flow bursts beyond geosynchronous altitude (Runov et al., 2009, 2011), we apply modeling of particle guiding centers in prescribed but realistic electric fields to improve our understanding of energetic particle acceleration and transport toward the inner magnetosphere through model-data comparisons. Representing the vortical nature of an earthward traveling flow burst, a localized, westward-directed transient electric field flanked on either side by eastward fields related to tailward flow is superimposed on a nominal steady state electric field. We simulate particle spectra observed at multiple THEMIS spacecraft located throughout the magnetotail and fit the modeled spectra to observations, thus constraining properties of the electric field model. We find that a simple potential electric field model is capable of explaining the presence and spectral properties of both geosynchronous altitude and "trans-geosynchronous" injections at higher L-shells(L > 6.6 R _E)in a manner self-consistent with the injections' inward penetration. In particular, despite the neglect of the magnetic field changes imparted by dipolarization and the inductive electric field associated with them, such a model can adequately describe the physics of both dispersed injections and depletions("dips")in energy flux in terms of convective fields associated with earthward flow channels and their return flow. The transient(impulsive), localized, and vortical nature of the earthward-propagating electric field pulse is what makes this model particularly effective.
机译:出于强烈的最近的观察电场和高架高能粒子通量流内爆发超出同步高度(Runov et al ., 2009, 2011),我们申请建模的粒子指导中心但现实的电场提高我们对高能粒子的理解向内加速度和运输磁气圈通过模型数据比较。代表向地球的旋转的性质旅游流破裂,本地化,westward-directed瞬态电场在两侧的东领域相关tailward流叠加在一个名义稳态电场。光谱观察到多个THEMIS计划位于整个磁尾和适应建模光谱观测,从而限制电场的属性模型。领域模型是解释存在的能力同步和光谱特性高度和“trans-geosynchronous”注射L-shells更高(L > 6.6 R _E)的方式有条理的内注射的渗透。磁场的变化的dipolarization和感应电场与他们联系在一起,这样一个模型可以充分描述的物理分散的注射与消逝(“下降”)在能量通量而言对流场与向地面流有关渠道和回流。瞬态(冲动),本地化和旋转的earthward-propagating电的性质场脉冲使这个模型有效。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号