日本地球惑星科学連合2023年大会

講演情報

[E] オンラインポスター発表

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 the Inner Magnetospheric System

2023年5月23日(火) 09:00 〜 10:30 オンラインポスターZoom会場 (1) (オンラインポスター)

コンビーナ:桂華 邦裕(東京大学大学院理学系研究科地球惑星科学専攻)、三好 由純(名古屋大学宇宙地球環境研究所)、Theodore E Sarris(Democritus University of Thrace)、Evan G Thomas(Dartmouth College)

現地ポスター発表開催日時 (2023/5/23 17:15-18:45)

09:00 〜 10:30

[PEM13-P27] Nonlinear wave damping of chorus emission around 0.5 electron gyrofrequency demonstrated by 2D general curvilinear particle-in-cell simulation

*謝 怡凱1、Xueyi Wang2大村 善治1 (1.京都大学生存圏研究所、2.Department of Physics, Auburn University, Auburn, AL, USA)

キーワード:コーラス放射、ランダウ共鳴、セルフコンシステントシミュレーション、PICシミュレーション

Whistler mode chorus emissions are usually observed in the Earth’s inner magnetosphere with a gap around 0.5 electron gyrofrequency (fce) seperating upper-band and lower-band chorus. One of the mechanisms of the gap is the nonlinear wave damping via Landau resonance, which occurs in oblique chorus wave-particle interactions. Chorus emissions initially generate with broadband frequency at the equator and then damp at 0.5 fce during propagation toward higher latitudes. Evidence of the mechanism has been shown by observation of the Geotail satellite [1] and test-particle simulation [2]. In this study, we apply self-consistent two-dimensional general curvilinear particle-in-cell (2D gcPIC) simulation, and we well reproduced the formation of the gap of a slightly oblique chorus emission. Analyzing the simulation results, we confirm that the damped wave energies accelerate resonant electrons through Landau resonance. The energy exchanges occur on the perpendicular component of the wave electric field and perpendicular electron velocities.

References:
[1] Yagitani, S., T. Habagishi, & Y. Omura (2014), Geotail observation of upper band and lower band chorus elements in the outer magnetosphere, J. Geophys. Res. Space Physics, 119. https://doi.org/10.1002/2013JA019678.
[2] Hsieh, Y.-K., & Omura, Y. (2018). Nonlinear damping of oblique whistler mode waves via Landau resonance. Journal of Geophysical Research: Space Physics, 123. https://doi.org/10.1029/2018JA025848.