...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Ion-ScaleWave Properties and Enhanced Ion Heating Across the Low-Latitude Boundary Layer During Kelvin-Helmholtz Instability
【24h】

Ion-ScaleWave Properties and Enhanced Ion Heating Across the Low-Latitude Boundary Layer During Kelvin-Helmholtz Instability

机译:在Kelvin-Helmholtz稳定性期间,在低纬度边界层上的离子尺度波属性和增强的离子加热

获取原文
获取原文并翻译 | 示例
           

摘要

In the Earth's magnetosphere, the magnetotail plasma sheet ions are much hotter than in the shocked solar wind. On the dawn sector, the cold-component ions are more abundant and hotter by 30-40% when compared to the dusk sector. Recent statistical studies of the flank magnetopause and magnetosheath have shown that the level of temperature asymmetry of the magnetosheath is unable to account for this, so additional physical mechanisms must be at play, either at the magnetopause or plasma sheet that contributes to this asymmetry. In this study, we perform a statistical analysis on the ion-scale wave properties in the three main plasma regimes common to flank magnetopause boundary crossings when the boundary is unstable to Kelvin-Helmholtz instability (KHI): hot and tenuous magnetospheric,cold and dense magnetosheath, and mixed (Hasegawa et al., 2004). These statistics of ion-scale wave properties are compared to observations of fast magnetosonic wave modes that have recently been linked to Kelvin-Helmholtz (KH) vortex centered ion heating (Moore et al., 2016). The statistical analysis shows that during KH events there is enhanced nonadiabatic heating calculated during ion scale wave intervals when compared to non-KH events. This suggests that during KH events there is more free energy for ion-scale wave generation, which in turn can heat ions more effectively when compared to cases when KH waves are absent. This may contribute to the dawn favored temperature asymmetry of the plasma sheet; recent studies suggest KH waves favor the dawn flank during Parker-Spiral interplanetary magnetic field.
机译:在地球的磁极中,磁靶板离子比震动太阳风更热。在黎明部门,与黄昏部门相比,冷组分离子更加丰富30-40%。侧翼磁性常规和磁性的最近的统计研究表明,磁性惰性的温度不对称水平无法解释,因此必须在磁性常规或有助于这种不对称的等离子体片处进行额外的物理机制。在这项研究中,我们对侧翼磁档边界交叉的三个主要等离子体制度的离子尺度波属性进行统计分析,当边界不稳定到Kelvin-Helmholtz不稳定(khi):热且脆弱的磁气层,冷和致密磁性惰性,并混合(Hasegawa等,2004)。将离子尺度波属性的这些统计数据与最近与Kelvin-Helmholtz(KH)涡旋中心的离子加热相连的快速磁性波模式的观察(Moore等,2016)。统计分析表明,在KH事件期间,与非KH事件相比,在离子尺度波间隔期间,在离子尺度波间隔期间增加了增强的非分配加热。这表明在KH事件期间,与离子尺度波浪产生有更多的自由能量,这又可以更有效地热量在不存在KH波时更有效地加热。这可能有助于等离子体片的曙光青睐温度不对称;最近的研究表明KH Waves在帕克螺旋行星际磁场期间有利于黎明侧翼。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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