AbstractSeveral lines of evidence indicate a non-chondritic composition for bulk Earth. If Earth formed from the accretion of chondritic material, its non-chondritic composition, in particular the super-chondritic 142Nd/144Nd and low Mg/Fe ratios, might be explained by the collisional erosion of differentiated planetesimals during its formation. In this work we use an N-body code, that includes a state-of-the-art collision model, to follow the formation of protoplanets, similar to proto-Earth, from differentiated planetesimals (>100km) up to isolation mass (>0.16M⊕). Collisions between differentiated bodies have the potential to change the core–mantle ratio of the accreted protoplanets. We show that sufficient mantle material can be strippe...
The 142Nd/ 144 Nd ratio of the Earth is greater than the solar ratio as inferred from chondritic met...
International audienceChondrites are leftover solids from the early evolution of the solar protoplan...
International audienceMeteoritic chondrules are submillimeter spherules representing the major const...
Several lines of evidence indicate a non-chondritic composition for Bulk Earth. If Earth formed from...
AbstractSeveral lines of evidence indicate a non-chondritic composition for bulk Earth. If Earth for...
The compositional variations among the chondrites inform us about cosmochemical fractionation proces...
International audienceEarly in the Solar System's history, energetic collisions of differentiated bo...
International audienceSuperchondritic Sm/Nd (Samarium/Neodymium) ratio has been evidenced in Earth's...
International audienceThe 146 Sm-142 Nd short-lived decay system (half-life of 103 Ma) is a powerful...
International audienceImpact-induced erosion of the Earth's early crust during accretion of terrestr...
Dynamical scenarios of terrestrial planets formation involve strong perturbations of the inner part ...
Chondrules, mm-sized igneous-textured spherules, are the dominant bulk silicate constituent of chond...
Two fundamentally different processes of rocky planet formation exist, but it is unclear which one b...
The 142Nd/ 144 Nd ratio of the Earth is greater than the solar ratio as inferred from chondritic met...
International audienceChondrites are leftover solids from the early evolution of the solar protoplan...
International audienceMeteoritic chondrules are submillimeter spherules representing the major const...
Several lines of evidence indicate a non-chondritic composition for Bulk Earth. If Earth formed from...
AbstractSeveral lines of evidence indicate a non-chondritic composition for bulk Earth. If Earth for...
The compositional variations among the chondrites inform us about cosmochemical fractionation proces...
International audienceEarly in the Solar System's history, energetic collisions of differentiated bo...
International audienceSuperchondritic Sm/Nd (Samarium/Neodymium) ratio has been evidenced in Earth's...
International audienceThe 146 Sm-142 Nd short-lived decay system (half-life of 103 Ma) is a powerful...
International audienceImpact-induced erosion of the Earth's early crust during accretion of terrestr...
Dynamical scenarios of terrestrial planets formation involve strong perturbations of the inner part ...
Chondrules, mm-sized igneous-textured spherules, are the dominant bulk silicate constituent of chond...
Two fundamentally different processes of rocky planet formation exist, but it is unclear which one b...
The 142Nd/ 144 Nd ratio of the Earth is greater than the solar ratio as inferred from chondritic met...
International audienceChondrites are leftover solids from the early evolution of the solar protoplan...
International audienceMeteoritic chondrules are submillimeter spherules representing the major const...