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Updated: Jul 12, 2026

Scattering And Absorption of Light in Planetary Regoliths
Published on: July 1, 2019
An asteroid breakup 160 Myr ago as the probable source of the K/T impactor
William F Bottke1, David Vokrouhlický, David Nesvorný
1Southwest Research Institute, 1050 Walnut St, Suite 300, Boulder, Colorado 80302, USA. bottke@boulder.swri.edu
Abstract:
The terrestrial and lunar cratering rate is often assumed to have been nearly constant over the past 3 Gyr. Different lines of evidence, however, suggest that the impact flux from kilometre-sized bodies increased by at least a factor of two over the long-term average during the past approximately 100 Myr. Here we argue that this apparent surge was triggered by the catastrophic disruption of the parent body of the asteroid Baptistina, which we infer was a approximately 170-km-diameter body (carbonaceous-chondrite-like) that broke up 160(-20)+30Myr ago in the inner main asteroid belt. Fragments produced by the collision were slowly delivered by dynamical processes to orbits where they could strike the terrestrial planets. We find that this asteroid shower is the most likely source (>90 per cent probability) of the Chicxulub impactor that produced the Cretaceous/Tertiary (K/T) mass extinction event 65 Myr ago.
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