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Late Quaternary tectonics controlled by fault reactivation. Insights from a local transpressional system in the intermontane Lerma valley, Cordillera Oriental, NW Argentina

  • We analyzed the Lomas de Carabajal area in the intermontane Lerma valley of the Cordillera Oriental to assess the level of neotectonic activity in a densely populated region of northwestern Argentina. In this region, Plio-Pleistocene synorogenic conglomerates are deformed, locally associated with high-angle faults, and NNW-SSE oriented en-echelon folds characterized by wavelengths of < 1 km. The deformed Quaternary units follow the same pattern of deformation as observed in the underlying Neogene deposits; growth-strata geometries are observed near faults. This configuration is compatible with local left-lateral transpressional tectonism driven by ENE-WSW buttressing against the NW-oriented border of a Cretaceous extensional basin (Alemania sub-basin). Optically Stimulated Luminescence analysis of sandy-silty layers interbedded within the folded late Pleistocene conglomeratic sequence helps to determine uplift rates of 0.83-0.87 mm/a during the last 30-40 ka. Nearby the Lomas de Carabajal, a WNW-striking, 3-m-high fault scarp disruptsWe analyzed the Lomas de Carabajal area in the intermontane Lerma valley of the Cordillera Oriental to assess the level of neotectonic activity in a densely populated region of northwestern Argentina. In this region, Plio-Pleistocene synorogenic conglomerates are deformed, locally associated with high-angle faults, and NNW-SSE oriented en-echelon folds characterized by wavelengths of < 1 km. The deformed Quaternary units follow the same pattern of deformation as observed in the underlying Neogene deposits; growth-strata geometries are observed near faults. This configuration is compatible with local left-lateral transpressional tectonism driven by ENE-WSW buttressing against the NW-oriented border of a Cretaceous extensional basin (Alemania sub-basin). Optically Stimulated Luminescence analysis of sandy-silty layers interbedded within the folded late Pleistocene conglomeratic sequence helps to determine uplift rates of 0.83-0.87 mm/a during the last 30-40 ka. Nearby the Lomas de Carabajal, a WNW-striking, 3-m-high fault scarp disrupts radiocarbon dated, 10-ka-old loessic deposits providing a Holocene mean uplift rate of 0.30 mm/a. Our data unambiguously show that shallow crustal deformation in the intermontane Lerma valley is ongoing; some of this deformation may be associated with seismicity. Our findings support the notion of temporally and spatially disparate deformation processes in the broken foreland of the northwestern Argentinean Andes.show moreshow less

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Author details:Victor H. GarciaORCiD, Fernando D. HongnORCiD, Daniel YagupskyORCiD, Heiko PingelORCiDGND, Timothy Kinnaird, Diego WinocurORCiD, Ernesto CristalliniORCiD, Ruth Aj Robinson, Manfred StreckerORCiDGND
DOI:https://doi.org/10.1016/j.jsg.2019.103875
ISSN:0191-8141
Title of parent work (English):Journal of structural geology
Publisher:Elsevier
Place of publishing:Oxford
Publication type:Article
Language:English
Year of first publication:2019
Publication year:2019
Release date:2020/10/20
Tag:Neotectonics; OSL and C-14 geochronology; Seismogenic sources; Structural geology; Syntectonic sedimentation
Volume:128
Number of pages:17
Funding institution:Agencia Nacional de Promocion Cientifica y TecnologicaANPCyT [PICT 07-38295, PICT 2010-1441, PICT 2013-1264, PICTO UNRN 2010-0175, PICT 2017-1928]; Universidad Nacional de Rio Negro [PI 40-B-243]; Universidad Nacional de Salta [CIUNSa 2336]; IBIGEO PUE-CONICET; StRATEGy, the international research training group IGK2018 SuRfAce processes, Tectonics and Georesources: The Andean foreland basin of Argentina of the German Science Foundation [STR 373/34-1]; StRATEGy, the international research training group IGK2018 SuRfAce processes, Tectonics and Georesources: The Andean foreland basin of Argentina of the German Science Foundation (Potsdam University-CONICET); CAPES Foundation Postdoctoral Research FellowshipCAPES
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Geowissenschaften
DDC classification:5 Naturwissenschaften und Mathematik / 55 Geowissenschaften, Geologie / 550 Geowissenschaften
Peer review:Referiert
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