JpGU-AGU Joint Meeting 2020

講演情報

[E] 口頭発表

セッション記号 P (宇宙惑星科学) » P-EM 太陽地球系科学・宇宙電磁気学・宇宙環境

[P-EM13] Dynamics of Magnetosphere and Ionosphere

コンビーナ:中溝 葵(情報通信研究機構 電磁波研究所)、尾崎 光紀(金沢大学理工研究域電子情報学系)、藤本 晶子(九州工業大学)、佐藤 由佳(日本工業大学)

[PEM13-15] Simulation on 3D structure of auroral electrojet

*矢野 有人1海老原 祐輔1 (1.京都大学生存圏研究所)

We developed a simplified Hall-MHD simulation to understand the magnetosphere-ionosphere coupling in the polar region during the auroral substorm. The governing equations were derived from the law of conservation of momentum of ions and electrons, the equation of continuity of plasma, the law of Ohm, the law of Ampere, and the law of Faraday. The Hall effect is included because it retains the Hall term in the governing equations. The advection in the governing equations were solved by using the Lax-Wendroff scheme and the Superbee limiter function. We imposed a flow shear on the topside boundary to excite Alfven wave. First, we ran the simulation under the condition that the ionospheric plasma density is uniform in the horizontal space. The Alfven wave propagates downward, and reflected at altitude being lower than the peak of the Pedersen conductivity. It was confirmed that the FACs were closed by the Pedersen current in the lower ionosphere. Secondary, we introduced a high-density channel. The secondary electric field is confirmed to appear due to blockage of the Hall current (polarization), which intensifies the ionospheric current. The direction of ionospheric current depends on altitude. The current is intensified at specified altitudes. This is similar to the auroral electrojet.