3-D numerical simulation of the “finger” structure in the inner magnetosphere
编号:105
稿件编号:1893 访问权限:仅限参会人
更新:2021-06-15 07:44:32
浏览:650次
张贴报告
摘要
We present a case study of the H+, He+, and O+ low-energy “finger” structure observed by the Van Allen Probe A Helium, Oxygen, Proton, and Electron (HOPE) spectrometer on 26 October 2016. This structure, whose characteristic energy is from approximately tens of eV to a few keV, looks like a “finger” that is rich in O+ and He+, faint in H+ on an energy-time spectrogram. By using the Space Weather Modeling Framework (SWMF) and Weimer05 electric fields, combined with a dipole or more self-consistent magnetohydrodynamic (MHD) magnetic field, backward tracing of O+ reveals that the structure is formed by ions with a long drift time from the plasma sheet during the magnetic storm main phase to the inner region with trajectories dominated by eastward drift motion, and the formation depends on the convection electric field model. The heavy ion dominance of the feature is explained by charge exchange losses along the long slow drift paths.
关键字
3D numerical simulation,inner magnetosphere,ions
稿件作者
王娅冰
中国科学院上海天文台;南京信息工程大学
吕建永
南京信息工程大学
KistlerLynn
University of New Hampshire
孔大力
中国科学院上海天文台
发表评论