Literature DB >> 23407535

The structure of the asteroid 4 Vesta as revealed by models of planet-scale collisions.

M Jutzi1, E Asphaug, P Gillet, J-A Barrat, W Benz.   

Abstract

Asteroid 4 Vesta seems to be a major intact protoplanet, with a surface composition similar to that of the HED (howardite-eucrite-diogenite) meteorites. The southern hemisphere is dominated by a giant impact scar, but previous impact models have failed to reproduce the observed topography. The recent discovery that Vesta's southern hemisphere is dominated by two overlapping basins provides an opportunity to model Vesta's topography more accurately. Here we report three-dimensional simulations of Vesta's global evolution under two overlapping planet-scale collisions. We closely reproduce its observed shape, and provide maps of impact excavation and ejecta deposition. Spiral patterns observed in the younger basin Rheasilvia, about one billion years old, are attributed to Coriolis forces during crater collapse. Surface materials exposed in the north come from a depth of about 20 kilometres, according to our models, whereas materials exposed inside the southern double-excavation come from depths of about 60-100 kilometres. If Vesta began as a layered, completely differentiated protoplanet, then our model predicts large areas of pure diogenites and olivine-rich rocks. These are not seen, possibly implying that the outer 100 kilometres or so of Vesta is composed mainly of a basaltic crust (eucrites) with ultramafic intrusions (diogenites).

Entities:  

Year:  2013        PMID: 23407535     DOI: 10.1038/nature11892

Source DB:  PubMed          Journal:  Nature        ISSN: 0028-0836            Impact factor:   49.962


  9 in total

1.  The geologically recent giant impact basins at Vesta's south pole.

Authors:  Paul Schenk; David P O'Brien; Simone Marchi; Robert Gaskell; Frank Preusker; Thomas Roatsch; Ralf Jaumann; Debra Buczkowski; Thomas McCord; Harry Y McSween; David Williams; Aileen Yingst; Carol Raymond; Chris Russell
Journal:  Science       Date:  2012-05-11       Impact factor: 47.728

2.  The violent collisional history of asteroid 4 Vesta.

Authors:  S Marchi; H Y McSween; D P O'Brien; P Schenk; M C De Sanctis; R Gaskell; R Jaumann; S Mottola; F Preusker; C A Raymond; T Roatsch; C T Russell
Journal:  Science       Date:  2012-05-11       Impact factor: 47.728

3.  Color and albedo heterogeneity of Vesta from Dawn.

Authors:  Vishnu Reddy; Andreas Nathues; Lucille Le Corre; Holger Sierks; Jian-Yang Li; Robert Gaskell; Timothy McCoy; Andrew W Beck; Stefan E Schröder; Carle M Pieters; Kris J Becker; Bonnie J Buratti; Brett Denevi; David T Blewett; Ulrich Christensen; Michael J Gaffey; Pablo Gutierrez-Marques; Michael Hicks; Horst Uwe Keller; Thorsten Maue; Stefano Mottola; Lucy A McFadden; Harry Y McSween; David Mittlefehldt; David P O'Brien; Carol Raymond; Christopher Russell
Journal:  Science       Date:  2012-05-11       Impact factor: 47.728

4.  Vesta's shape and morphology.

Authors:  R Jaumann; D A Williams; D L Buczkowski; R A Yingst; F Preusker; H Hiesinger; N Schmedemann; T Kneissl; J B Vincent; D T Blewett; B J Buratti; U Carsenty; B W Denevi; M C De Sanctis; W B Garry; H U Keller; E Kersten; K Krohn; J-Y Li; S Marchi; K D Matz; T B McCord; H Y McSween; S C Mest; D W Mittlefehldt; S Mottola; A Nathues; G Neukum; D P O'Brien; C M Pieters; T H Prettyman; C A Raymond; T Roatsch; C T Russell; P Schenk; B E Schmidt; F Scholten; K Stephan; M V Sykes; P Tricarico; R Wagner; M T Zuber; H Sierks
Journal:  Science       Date:  2012-05-11       Impact factor: 47.728

5.  Elemental mapping by Dawn reveals exogenic H in Vesta's regolith.

Authors:  Thomas H Prettyman; David W Mittlefehldt; Naoyuki Yamashita; David J Lawrence; Andrew W Beck; William C Feldman; Timothy J McCoy; Harry Y McSween; Michael J Toplis; Timothy N Titus; Pasquale Tricarico; Robert C Reedy; John S Hendricks; Olivier Forni; Lucille Le Corre; Jian-Yang Li; Hugau Mizzon; Vishnu Reddy; Carol A Raymond; Christopher T Russell
Journal:  Science       Date:  2012-09-20       Impact factor: 47.728

6.  Dark material on Vesta from the infall of carbonaceous volatile-rich material.

Authors:  T B McCord; J-Y Li; J-P Combe; H Y McSween; R Jaumann; V Reddy; F Tosi; D A Williams; D T Blewett; D Turrini; E Palomba; C M Pieters; M C De Sanctis; E Ammannito; M T Capria; L Le Corre; A Longobardo; A Nathues; D W Mittlefehldt; S E Schröder; H Hiesinger; A W Beck; F Capaccioni; U Carsenty; H U Keller; B W Denevi; J M Sunshine; C A Raymond; C T Russell
Journal:  Nature       Date:  2012-11-01       Impact factor: 49.962

7.  Dawn at Vesta: testing the protoplanetary paradigm.

Authors:  C T Russell; C A Raymond; A Coradini; H Y McSween; M T Zuber; A Nathues; M C De Sanctis; R Jaumann; A S Konopliv; F Preusker; S W Asmar; R S Park; R Gaskell; H U Keller; S Mottola; T Roatsch; J E C Scully; D E Smith; P Tricarico; M J Toplis; U R Christensen; W C Feldman; D J Lawrence; T J McCoy; T H Prettyman; R C Reedy; M E Sykes; T N Titus
Journal:  Science       Date:  2012-05-11       Impact factor: 47.728

8.  Spectroscopic characterization of mineralogy and its diversity across Vesta.

Authors:  M C De Sanctis; E Ammannito; M T Capria; F Tosi; F Capaccioni; F Zambon; F Carraro; S Fonte; A Frigeri; R Jaumann; G Magni; S Marchi; T B McCord; L A McFadden; H Y McSween; D W Mittlefehldt; A Nathues; E Palomba; C M Pieters; C A Raymond; C T Russell; M J Toplis; D Turrini
Journal:  Science       Date:  2012-05-11       Impact factor: 47.728

9.  Asteroid vesta: spectral reflectivity and compositional implications.

Authors:  T B McCord; J B Adams; T V Johnson
Journal:  Science       Date:  1970-06-19       Impact factor: 47.728

  9 in total
  2 in total

1.  A deep crust-mantle boundary in the asteroid 4 Vesta.

Authors:  Harold Clenet; Martin Jutzi; Jean-Alix Barrat; Erik I Asphaug; Willy Benz; Philippe Gillet
Journal:  Nature       Date:  2014-07-17       Impact factor: 49.962

2.  Olivine in an unexpected location on Vesta's surface.

Authors:  E Ammannito; M C De Sanctis; E Palomba; A Longobardo; D W Mittlefehldt; H Y McSween; S Marchi; M T Capria; F Capaccioni; A Frigeri; C M Pieters; O Ruesch; F Tosi; F Zambon; F Carraro; S Fonte; H Hiesinger; G Magni; L A McFadden; C A Raymond; C T Russell; J M Sunshine
Journal:  Nature       Date:  2013-11-06       Impact factor: 49.962

  2 in total

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