论文标题
彗星67p/churyumov-gerasimenko的磁动力学附近的电子动力学
Electron Dynamics near Diamagnetic Regions of Comet 67P/Churyumov-Gerasimenko
论文作者
论文摘要
Rosetta航天器检测到67p/Churyumov-Gerasimenko周围的瞬时和零星磁磁区域。在本文中,我们介绍了批量和外电子动力学的统计分析,以及对磁磁区域附近的超电子倾斜角分布(PAD)的案例研究。散装电子密度与局部中性密度相关,我们发现在彗星的南部纬度上测得的电子密度有明显的增强。每次航天器进入二磁体区域时,具有数十万eV到几百eV之间的能量在数十eV到几百eV之间的通量会减少。我们提出了一种机制,可以通过与磁场相关的太阳风电子来解释这种还原,并且在衰减的磁场环境中绝热地运输后,可以有限地进入Dimamagnetic区域。我们的分析表明,外电子垫从磁管腔外的几乎各向同性变成了边界附近的野外对准分布。当电子Gyroradius与磁场线曲率的尺寸相当时,电子传输变得混乱和非绝热,这决定了通量变化的上限限制。这项研究基于罗塞塔(Rosetta)的观察结果,即彗星距离太阳和南部夏季彗星季节约200公里的中心距离约200公里。
The Rosetta spacecraft detected transient and sporadic diamagnetic regions around comet 67P/Churyumov-Gerasimenko. In this paper we present a statistical analysis of bulk and suprathermal electron dynamics, as well as a case study of suprathermal electron pitch angle distributions (PADs) near a diamagnetic region. Bulk electron densities are correlated with the local neutral density and we find a distinct enhancement in electron densities measured over the southern latitudes of the comet. Flux of suprathermal electrons with energies between tens of eV to a couple of hundred eV decreases each time the spacecraft enters a diamagnetic region. We propose a mechanism in which this reduction can be explained by solar wind electrons that are tied to the magnetic field and after having been transported adiabatically in a decaying magnetic field environment, have limited access to the diamagnetic regions. Our analysis shows that suprathermal electron PADs evolve from an almost isotropic outside the diamagnetic cavity to a field-aligned distribution near the boundary. Electron transport becomes chaotic and non-adiabatic when electron gyroradius becomes comparable to the size of the magnetic field line curvature, which determines the upper energy limit of the flux variation. This study is based on Rosetta observations at around 200 km cometocentric distance when the comet was at 1.24 AU from the Sun and during the southern summer cometary season.