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Article Dans Une Revue Science Année : 2022

Earth's composition was modified by collisional erosion

Résumé

The 146 Sm-142 Nd short-lived decay system (half-life of 103 Ma) is a powerful tracer of the early mantle-crust evolution of planetary bodies. However, an elevated 142 Nd/ 144 Nd in modern terrestrial rocks relative to chondrite meteorites has been proposed to be caused by nucleosynthetic anomalies, obscuring the early Earth's differentiation history. We use step-wise dissolution of primitive chondrites to quantify nucleosynthetic contributions on the composition of chondrites. After correction for nucleosynthetic anomalies, Earth and the silicate parts of differentiated planetesimals contain resolved excesses of 142 Nd relative to chondrites. We conclude that only collisional erosion of primordial crusts can explain such compositions. This process associated with planetary accretion must have produced substantial loss of incompatible elements including long-term heat producing elements such as U, Th, and K.
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Dates et versions

hal-03859736 , version 1 (18-11-2022)

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Paul Frossard, Claudine Israel, Audrey Bouvier, Maud Boyet. Earth's composition was modified by collisional erosion. Science, 2022, 377 (6614), pp.1529-1532. ⟨10.1126/science.abq7351⟩. ⟨hal-03859736⟩
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