

Supporting material for Quantifying tectonic and glacial controls on topography in the Patagonian Andes (46.5°S) from integrated thermochronometry and thermokinematic modeling
Cite as:
Andrić-Tomašević, Nevena; Falkowski, Sarah; Georgieva, Viktoria; Glotzbach, Christoph; Strecker, Manfred R.; Ehlers, Todd A. (2021): Supporting material for Quantifying tectonic and glacial controls on topography in the Patagonian Andes (46.5°S) from integrated thermochronometry and thermokinematic modeling. GFZ Data Services. https://doi.org/10.5880/fidgeo.2021.004Status
I N R E V I E W : Andrić-Tomašević, Nevena; Falkowski, Sarah; Georgieva, Viktoria; Glotzbach, Christoph; Strecker, Manfred R.; Ehlers, Todd A. (2021): Supporting material for Quantifying tectonic and glacial controls on topography in the Patagonian Andes (46.5°S) from integrated thermochronometry and thermokinematic modeling. GFZ Data Services. https://doi.org/10.5880/fidgeo.2021.004
Abstract
The data set includes supporting tables and figures to the main text of the manuscript entitled “Quantifying tectonic and glacial controls on topography in the Patagonian Andes (46.5°S) from integrated thermochronometry and thermokinematic modeling”. The paper focuses on tectonic and glacial contributions to the erosion history and topography in the Patagonian Andes (46.5°S). The data set comprises (i) new bedrock thermochronometric ages (apatite and zircon (U-Th)/He, AHe and ZHe, respectively, and fission-track measurements, AFT and ZFT, respectively); (ii) published bedrock thermochronometric ages (AHe, AFT, ZHe and ZFT measurements), (iii) 3D thermo-kinematic model results and (iv) a table including parameters used in the modeling. The detailed analytical procedure is described in a description file (“2021-004_Andric-Tomasevic-et-al_Data-Description.pdf”).
Authors
Contact
- Andrić-Tomašević, Nevena (Post-doctoral researcher) ; Department of Geosciences, University of Tübingen, Tübingen, Germany;
Keywords
Patagonian Andes, thermochronology, 3 D thermo-kinematic numerical modeling, fold and thrust belt, Glacial erosionGCMD Science Keywords
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