Early Cretaceous to Cenozoic Growth of the Patagonian Andes as Revealed by Low‐Temperature Thermochronology
Author:
Affiliation:
1. Instituto de Estudios Andinos “Don Pablo Groeber” Universidad de Buenos Aires CONICET Buenos Aires Argentina
2. Université Savoie Mont Blanc Chambery France
3. Department of Earth and Environmental Sciences Dalhousie University Halifax NS Canada
Funder
Agencia Nacional de Promoción Científica y Tecnológica
Consejo Nacional de Investigaciones Científicas y Técnicas
Global Affairs Canada
Secretaría de Ciencia y Técnica
Publisher
American Geophysical Union (AGU)
Subject
Geochemistry and Petrology,Geophysics
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1029/2021TC007113
Reference72 articles.
1. Quantifying Tectonic and Glacial Controls on Topography in the Patagonian Andes (46.5°S) From Integrated Thermochronometry and Thermo‐Kinematic Modeling
2. A multidisciplinary study of the Lower Cretaceous marine to continental transition in the northern Austral-Magallanes basin and its geodynamic significance
3. Innovations in (U–Th)/He, Fission Track, and Trapped Charge Thermochronometry with Applications to Earthquakes, Weathering, Surface‐Mantle Connections, and the Growth and Decay of Mountains
4. Climatic and ecologic changes during Miocene surface uplift in the Southern Patagonian Andes
5. Neogene kinematic history of Nazca–Antarctic–Phoenix slab windows beneath Patagonia and the Antarctic Peninsula
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1. Geodynamic and Climatic Forcing on Late‐Cenozoic Exhumation of the Southern Patagonian Andes (Fitz Roy and Torres del Paine massifs);Tectonics;2024-07
2. Tectonic and geodynamic controls on Oligocene–Miocene paleogeography and basin subsidence in southern Patagonia;Journal of South American Earth Sciences;2024-04
3. Kinematic-structural modeling of hybrid fold-thrust belt systems: Insights from the Southern Patagonian Andes;Journal of Structural Geology;2024-03
4. Early development of the Patagonian fold and thrust belt and the onset of foreland sedimentation in the Austral-Magallanes basin;Journal of South American Earth Sciences;2024-01
5. An assessment of dip-slip versus strike-slip faulting modes along the Patagonian Andes (39°-50° S) and their related orogenic models;International Geology Review;2023-07-03
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