INVESTIGADORES
ROCHER Sebastian
artículos
Título:
High-resolution images above the Pampean flat slab of Argentina (31-32ºS) from local receiver functions: Implications on regional tectonics
Autor/es:
JEAN BAPTISTE AMMIRATI; SOFÍA PÉREZ LUJÁN; PATRICIA ALVARADO; SUSAN BECK; SEBASTIAN ROCHER; GEORGE ZANDT
Revista:
EARTH AND PLANETARY SCIENCE LETTERS
Editorial:
ELSEVIER SCIENCE BV
Referencias:
Lugar: Amsterdam; Año: 2016 vol. 450 p. 29 - 39
ISSN:
0012-821X
Resumen:
In the flat slab region of the South Central Andes (~31-32ºS), geological observations suggest that the regional crustal structure is inherited from the accretion of different terranes during the Ordovician. These structures were later reactivated, first in extension *Manuscript Click here to view linked References during the Triassic and later in compression during the Andean uplift since the Miocene. Seismological observations confirmed that those fault structures extend to depth with décollement levels that accommodate current crustal shortening in the region. In order to get better insight on the regional tectonics we computed higher frequency receiver functions from local slab seismicity of intermediate ~100 km depth. Using a common conversion point (CCP) stacking method we obtained cross sections showing high vertical resolution crustal structure at the transition between the Precordillera and the Frontal Cordillera. In addition we performed a joint inversion of our high frequency receiver functions with surface wave data from ambient noise tomography allowing us to constrain absolute seismic wave velocities. Our higher resolution images reveal more structural details down to a depth of 80 km and laterally over the flat slab in good agreement with previous studies. Our results help to better identify very shallow discontinuities in seismic velocities. Recent petrological analyses combined with our high-resolution RF structure correlates with a crustal mafic composition and partial eclogitization in the lower crust. We observe a shift in the crustal structure between the Precordillera (east) and the Frontal Cordillera (west). Regional seismicity and previously determined focal mechanisms superimposed over our images indicate this shifting is a thrust structure extending down to a depth of 40 km. Our results combined with petrological analyses suggest the presence of a master décollement between the Cuyania (Western Precordillera) and Chilenia (Frontal Cordillera) terranes that probably accommodates the crustal deformation in the Pampean flat slab region since the Late Ordovician.