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Updated: Jul 10, 2026

Scattering And Absorption of Light in Planetary Regoliths
Published on: July 1, 2019
Chondrite parent bodies as escaped satellites of proto-planetary embryos
Harold F Levison1, Rogerio Deienno1, Kevin J Walsh1
1Solar System Science and Exploration Division, Southwest Research Institute, Boulder, CO USA.
Abstract:
Chondrites are composed of formerly partially molten material, known as chondrules, surrounded by fine-grained matrix. They date from the earliest times in Solar System history. However, their role in the formation of the planets is uncertain because, in part, it is not clear how they were produced. Here, we show a robust pathway for forming meteorite-producing asteroids that contain chondrules through embryo-embryo collisions during the late stages of terrestrial planet formation. Melted material from these impacts cool into chondrules and mix with unmelted material in embryo-centric disks that formed from the ejecta. This material accretes into numerous asteroid-sized satellites. These objects are later ejected onto heliocentric orbits because of gravitational encounters with other embryos, thereby becoming the parent bodies of chondrites. This mechanism provides a pathway to form chondrites in Solar System history at times commensurate with measured chondrule ages, while explaining many of their physical properties.
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