日本地球惑星科学連合2025年大会

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 the Inner Magnetospheric System

2025年5月28日(水) 13:45 〜 15:15 302 (幕張メッセ国際会議場)

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)、Goldstein Jerry(Southwest Research Institute)、Sun YIXIN(Peking University)、座長:Jun Chae-Woo(Insto, Nagoya University)、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)、山本 和弘(名古屋大学宇宙地球環境研究所)


13:45 〜 14:05

[PEM13-11] Latitudinal dependence of ground VLF transmitter wave power in the inner magnetosphere

*Zhiyang Xia1Lunjin Chen1、Wenyao Gu1、Richard B. Horne2Yoshizumi Miyoshi3Yoshiya Kasahara4Atsushi Kumamoto5Fuminori Tsuchiya5Satoko Nakamura3Masahiro Kitahara5Iku Shinohara6 (1.University of Texas at Dallas、2.British Antarctic Survey、3.Nagoya University、4.Kanazawa University、5.Tohoku University、6. Japan Aerospace Exploration Agency)

キーワード:VLF transmitter, whistler wave, wave propagation, ray tracing, inner magnetosphere, ERG/Arase

In this study, we use approximately 3 years of observations from the Exploration of energization and Radiation in Geospace (ERG/Arase) satellite to statistically study the meridional distribution of wave power from very-low-frequency (VLF) ground transmitters in the inner magnetosphere and analyze the corresponding latitudinal dependence. The results show that the mean intensity of NWC transmitter signals decreases as the transmitter emission propagates from the southern latitude (∼-30°) region to the equator in the inner magnetosphere and then increases as the emission propagates to the northern latitude (∼30°) region again. Similar latitudinal dependence can be found from the Van Allen Probes’ observation with a narrower latitude range (∼-20° to 0°). A ray-tracing simulation of the transmitter emission propagation is performed and reproduces a meridional wave power distribution similar to the observation. Similar latitudinal dependence can also be found for NAA, NLK and NLM transmitters.