dc.creator
Morbidelli, Alessandro
dc.creator
Neumann, Wladimir
dc.creator
Day, James M. D.
dc.creator
Rubie, David C.
dc.creator
Archer, Gregory J.
dc.creator
Artemieva, Natalia
dc.creator
Wünnemann, Kai
dc.date.accessioned
2024-09-30T08:19:06Z
dc.date.available
2024-09-30T08:19:06Z
dc.identifier
https://doi.org/10.35003/OL4QC4
dc.identifier.uri
https://refubium.fu-berlin.de/handle/fub188/45087
dc.identifier.uri
http://dx.doi.org/10.17169/refubium-44799
dc.description
Abstract: Abundances of the highly siderophile elements (HSEs) in silicate portions of Earth and the Moon provide constraints on the impact flux to both bodies, but only since ~100 Myr after the beginning of the Solar System (hereafter tCAI). The earlier impact flux to the inner Solar System remains poorly constrained. The former dwarf planet Vesta offers the possibility to probe this early history, because it underwent rapid core formation ~1 Myr after tCAI and its silicate portions possess elevated chondritic HSE abundances. Here we quantify the material accreted into Vesta’s mantle and crust and find that the HSE abundances can only be explained by the bombardments of planetesimals from the terrestrial planet region. The Vestan mantle accreted HSEs within the first 60 Myr; its crust accreted HSEs throughout the Solar System history, with asteroid impacts dominating only since ~4.1 billion years ago. Our results indicate that all major bodies in the inner Solar System accreted planetesimals predominantly from the terrestrial planet region. The asteroid belt was either never significantly more massive than today, or it rapidly lost most of its mass early in the Solar System history.
dc.subject
Computer and Information Science
dc.subject
Asteroids, comets and Kuiper belt
dc.subject
early solar system
dc.subject
highly siderophile elements (HSEs)
dc.subject
silicate portions
dc.subject
terrestrial planet region
dc.title
Replication Data for: Common feedstocks of late accretion for the terrestrial planets
dcterms.accessRights.openaire
metadata only access