Literature DB >> 17737082

Clementine observations of the aristarchus region of the moon.

A S McEwen, M S Robinson, E M Eliason, P G Lucey, T C Duxbury, P D Spudis.   

Abstract

Multispectral and topographic data acquired by the Clementine spacecraft provide information on the composition and geologic history of the Aristarchus region of the moon. Altimetry profiles show the Aristarchus plateau dipping about 1 degrees to the north-northwest and rising about 2 kilometers above the surrounding lavas of Oceanus Procellarum to the south. Dark, reddish pyroclastic glass covers the plateau to average depths of 10 to 30 meters, as determined from the estimated excavation depths of 100- to 1000-meter-diameter craters that have exposed materials below the pyroclastics. These craters and the walls of sinuous rilles also show that mare basalts underlie the pyroclastics across much of the plateau. Near-infrared images of Aristarchus crater reveal olivine-rich materials and two kilometer-sized outcrops of anorthosite in the central peaks. The anorthosite could be either a derivative of local magnesium-suite magmatism or a remnant of the ferroan anorthosite crust that formed over the primordial magma ocean.

Entities:  

Year:  1994        PMID: 17737082     DOI: 10.1126/science.266.5192.1858

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  2 in total

1.  The global distribution of pure anorthosite on the Moon.

Authors:  Makiko Ohtake; Tsuneo Matsunaga; Junichi Haruyama; Yasuhiro Yokota; Tomokatsu Morota; Chikatoshi Honda; Yoshiko Ogawa; Masaya Torii; Hideaki Miyamoto; Tomoko Arai; Naru Hirata; Akira Iwasaki; Ryosuke Nakamura; Takahiro Hiroi; Takamitsu Sugihara; Hiroshi Takeda; Hisashi Otake; Carle M Pieters; Kazuto Saiki; Kohei Kitazato; Masanao Abe; Noriaki Asada; Hirohide Demura; Yasushi Yamaguchi; Sho Sasaki; Shinsuke Kodama; Junya Terazono; Motomaro Shirao; Atsushi Yamaji; Shigeyuki Minami; Hiroaki Akiyama; Jean-Luc Josset
Journal:  Nature       Date:  2009-09-10       Impact factor: 49.962

2.  Spectral properties of Titan's impact craters imply chemical weathering of its surface.

Authors:  C D Neish; J W Barnes; C Sotin; S MacKenzie; J M Soderblom; S Le Mouélic; R L Kirk; B W Stiles; M J Malaska; A Le Gall; R H Brown; K H Baines; B Buratti; R N Clark; P D Nicholson
Journal:  Geophys Res Lett       Date:  2015-05-26       Impact factor: 4.720

  2 in total

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