Publication | Closed Access
Dawn; the Vesta–<scp>HED</scp> connection; and the geologic context for eucrites, diogenites, and howardites
215
Citations
106
References
2013
Year
EngineeringGeologic ContextPlanetary GeologyAsteroidTectonic EvolutionGeologyDawn CamerasMeteoriticsGeochemistryGeochronologyAsteroid VestaGeologic Time ScalePlanetary GeomorphologyMeteorite ImpactDawn MissionTectonics
Abstract The Dawn mission has provided new evidence strengthening the identification of asteroid Vesta as the parent body of the howardite, eucrite, and diogenite ( HED ) meteorites. The evidence includes Vesta's petrologic complexity, detailed spectroscopic characteristics, unique space weathering, diagnostic geochemical abundances and neutron absorption characteristics, chronology of surface units and impact history, occurrence of exogenous carbonaceous chondritic materials in the regolith, and dimensions of the core, all of which are consistent with HED observations and constraints. Global mapping of the distributions of HED lithologies by Dawn cameras and spectrometers provides the missing geologic context for these meteorites, thereby allowing tests of petrogenetic models and increasing their scientific value.
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