| Literature DB >> 19213911 |
Noriyuki Namiki1, Takahiro Iwata, Koji Matsumoto, Hideo Hanada, Hirotomo Noda, Sander Goossens, Mina Ogawa, Nobuyuki Kawano, Kazuyoshi Asari, Sei-Itsu Tsuruta, Yoshiaki Ishihara, Qinghui Liu, Fuyuhiko Kikuchi, Toshiaki Ishikawa, Sho Sasaki, Chiaki Aoshima, Kosuke Kurosawa, Seiji Sugita, Tadashi Takano.
Abstract
The farside gravity field of the Moon is improved from the tracking data of the Selenological and Engineering Explorer (SELENE) via a relay subsatellite. The new gravity field model reveals that the farside has negative anomaly rings unlike positive anomalies on the nearside. Several basins have large central gravity highs, likely due to super-isostatic, dynamic uplift of the mantle. Other basins with highs are associated with mare fill, implying basalt eruption facilitated by developed faults. Basin topography and mantle uplift on the farside are supported by a rigid lithosphere, whereas basins on the nearside deformed substantially with eruption. Variable styles of compensation on the near- and farsides suggest that reheating and weakening of the lithosphere on the nearside was more extensive than previously considered.Entities:
Year: 2009 PMID: 19213911 DOI: 10.1126/science.1168029
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728