SM051-0006
The Polar Wind Modulated by the Spatial Inhomogeneity of the Strength of the Earth's Magnetic Field

Wednesday, 16 December 2020
Poster
Kun Li1, Matthias Foerster2, Zhaojin Rong3, Stein Haaland4, Elena A Kronberg5, Jun Cui6, Lihui Chai3 and Yong Wei3, (1)Sun Yat-Sen University, Guangzhou, China, (2)Helmholtz Centre Potsdam GFZ German Research Centre for Geosciences, Potsdam, Germany, (3)Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing, China, (4)MPS/BCSS, IFT, Bergen, Norway, (5)Max Planck Institute for Solar System Research, Gottingen, Germany, (6)Sun Yat-sen University, School of Atmospheric Sciences, Zhuhai, China
Abstract:
When the geomagnetic field is weak, the small mirror force allows precipitating charged particles to deposit energy in the ionosphere. This leads to an increase in ionospheric outflow from the Earth’s polar cap region, but such an effect has not been previously observed because the energies of the ions of the polar ionospheric outflow are too low, making it difficult to detect the low-energy ions with a positively charged spacecraft. In this study, we found anti-correlation between ionospheric outflow and the strength of the Earth’s magnetic field. Our results suggest that the electron precipitation through the polar rain can be a main energy source of the polar wind during periods of high levels of solar activity. The decreased magnetic field due to spatial inhomogeneity of the Earth’s magnetic field and its effect on outflow can be used to study the outflow in history when the magnetic field was at similar levels.