Namiki Noriyuki, Iwata Takahiro, Matsumoto Koji, Hanada Hideo, Noda Hirotomo, Goossens Sander, Ogawa Mina, Kawano Nobuyuki, Asari Kazuyoshi, Tsuruta Sei-Itsu, Ishihara Yoshiaki, Liu Qinghui, Kikuchi Fuyuhiko, Ishikawa Toshiaki, Sasaki Sho, Aoshima Chiaki, Kurosawa Kosuke, Sugita Seiji, Takano Tadashi
Kyushu University, 6-10-1 Hakozaki, Higashi-ku, Fukuoka 812-8581, Japan.
Science. 2009 Feb 13;323(5916):900-5. doi: 10.1126/science.1168029.
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.
通过一颗中继子卫星,利用“月球科学与工程探测器”(SELENE)的跟踪数据改进了月球背面的重力场。新的重力场模型显示,月球背面有负异常环,与正面的正异常不同。几个盆地有大型中央重力高值,这可能是由于地幔的超均衡动态隆升。其他有高值的盆地与月海填充有关,这意味着发育的断层促进了玄武岩喷发。月球背面的盆地地形和地幔隆升由刚性岩石圈支撑,而正面的盆地在喷发时发生了显著变形。正反面不同的补偿方式表明,正面岩石圈的再加热和弱化比之前认为的更为广泛。