日本地球惑星科学連合2015年大会

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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-EM25] 太陽圏・惑星間空間

2015年5月25日(月) 09:00 〜 10:45 202 (2F)

コンビーナ:*徳丸 宗利(名古屋大学太陽地球環境研究所)、中川 朋子(東北工業大学工学部情報通信工学科)、座長:中川 朋子(東北工業大学工学部情報通信工学科)

10:15 〜 10:30

[PEM25-06] Kaguya observations of the lunar wake in the terrestrial foreshock

*Masaki n NISHINO1Yoshifumi SAITO2Hideo TSUNAKAWA3Masaki FUJIMOTO2Yuki HARADA4Futoshi TAKAHASHI5Shoichiro YOKOTA2Masaki MATSUSHIMA3Hidetoshi SHIBUYA6Hisayoshi SHIMIZU7 (1.Nagoya University、2.ISAS/JAXA、3.Tokyo TECH、4.SSL/UCB、5.Kyushu University、6.Kumamoto University、7.ERI, The University of Tokyo)

キーワード:Solar wind-Moon interaction, Lunar wake, Plasma refilling, Shock-reflected ions, SELENE (Kaguya)

There forms a tenuous region behind the Moon in the solar wind, as the lunar dayside surface adsorbs most of the incident solar wind plasma. Entry processes of solar wind plasma into this tenuous region, which is called the lunar wake, have been widely studied. In addition to gradual refilling of the wake by the ambient solar wind, it has been known that a portion of solar wind protons that are scattered at the dayside surface or deflected by crustal magnetic fields can enter the wake (i.e. type-2 entry). However, proton entry into the deepest lunar wake (i.e. anti-subsolar region at low altitude) by the type-2 process needs specific solar wind conditions. Here we report, using data from Kaguya spacecraft in orbit around the Moon, that solar wind ions reflected at the terrestrial bow shock easily access the deepest lunar wake, when the Moon is located in the foreshock. When the spacecraft location is magnetically connected to the lunar night-side surface, the kinetic energy of upward-going field-aligned electron beams decreases or electron beams disappear during the reflected-ion events, which shows that the intrusion of the shock-reflected ions and electrons into the wake changes the electrostatic potential of the lunar night-side surface.