Influence of upwelling mantle magmas on cratonic crust implied from Vp/Vs beneath South America platform

Author:

An Meijian1ORCID,Feng Mei1ORCID,Assumpção Marcelo S2ORCID,Bianchi Marcelo B2ORCID,França George S2,Rocha Marcelo P3,Bettucci Leda Sánchez4

Affiliation:

1. Chinese Academy of Geological Sciences , Beijing, 100037 , China

2. Department of Geophysics, Institute of Astronomy, Geophysics and Atmospheric Sciences, University of São Paulo , São Paulo , 05508-090 , Brazil

3. Seismological Observatory, Institute of Geosciences, University of Brasília , Brasília , 70910-000 , Brazil

4. Geophysical Observatory in Uruguay, Faculty of Sciences, University of the Republic , Montevideo , 11400 , Uruguay

Abstract

SUMMARY The crust of the South American platform recorded imprints of dynamic processes related with the opening of the Central and South Atlantic but has not been well measured. Crustal structure can be retrieved from teleseismic receiver functions using H–κ stacking, but nearly parallel stripes of high stacking values existing in stacking images for seismic stations in sedimentary area cause difficulties in identifying solutions. We show that some seemingly spurious stripes that do not point to any layer solution are helpful in the identification of the solution position. With the aid of the auxiliary stripes, we retrieved thicknesses and Vp/Vs of sedimentary and crystalline crust for 65 permanent stations of the Brazilian Seismographic Network and six new portable seismic stations in Brazil and Uruguay. The resulted sedimentary thickness and Vp/Vs exhibit a good correlation with the Phanerozoic sediments in the South American basins. The crust of Paraná–Etendeka Large Igneous Province (LIP) had been expected to be more mafic since it had ever been penetrated by mantle magma in the Cretaceous related to the south Atlantic opening. However, we found very low Vp/Vs (1.67) in the crystalline crust beneath the LIP, implying a more felsic crust and that no significant mafic intruding/underplating has occurred in the region. The more felsic crust may be formed in a special evolution early than the magmatic event, or during the magmatic event by releasing crustal volatiles. The resulted sedimentary thickness and Vp/Vs ratios exhibit a good correlation with the Phanerozoic sediments in the South American basins, which implies that Triassic–Jurassic and Cretaceous magmatism did not cause significant metamorphism in sediments formed before the magmatic events.

Funder

Natural Science Foundation of China

China Geological Survey

Chinese Academy of Geological Sciences

FAPESP

Publisher

Oxford University Press (OUP)

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