Correlating mantle cooling with tectonic transitions on early Earth

Author:

Gunawardana Prasanna M.1,Chowdhury Priyadarshi23ORCID,Morra Gabriele4,Cawood Peter A.1

Affiliation:

1. 1School of Earth Atmosphere and Environment, Monash University, Clayton, Victoria 3800, Australia

2. 2School of Earth and Planetary Sciences, National Institute of Science Education and Research, Bhubaneswar, Odisha 752050, India

3. 3Homi Bhabha National Institute, Training School Complex, Anushaktinagar, Mumbai, Maharashtra 400094, India

4. 4Department of Physics and School of Geosciences, University of Louisiana at Lafayette, Lafayette, Louisiana 70504, USA

Abstract

Abstract The dominant tectonic mode operating on early Earth (before ca. 2.5 Ga) remains elusive, with an increasing body of evidence suggesting that non-plate tectonic modes were likely more prevalent at that time. Thus, how plate tectonics evolved after that remains contentious. We performed two-dimensional numerical modeling of mantle convection at temperatures appropriate for the Hadean–Archean eons and show that subduction and rift systems may have spontaneously emerged on Earth from an earlier drip-and-rift–dominated tectonic mode in response to the secular cooling of the mantle. This cooling of the mantle was mediated by repeated events of rifting and dripping that likely occurred over a few hundred million years. As the mantle cooled, its effective viscosity and the thickness and strength of the lithosphere increased, which helped establish rigid plates and initiate plate tectonics on Earth.

Publisher

Geological Society of America

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