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  Geodynamic and Climatic Forcing on Late‐Cenozoic Exhumation of the Southern Patagonian Andes (Fitz Roy and Torres del Paine massifs)

Muller, V. A. P., Sue, C., Valla, P. G., Sternai, P., Simon‐Labric, T., Gautheron, C., Cuffey, K. M., Grujic, D., Bernet, M., Martinod, J., Ghiglione, M. C., Reiners, P., Willett, C., Shuster, D., Herman, F., Baumgartner, L., Braun, J. (2024): Geodynamic and Climatic Forcing on Late‐Cenozoic Exhumation of the Southern Patagonian Andes (Fitz Roy and Torres del Paine massifs). - Tectonics, 43, 7, e2023TC007914.
https://doi.org/10.1029/2023TC007914

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Muller, Veleda A. P.1, Author
Sue, Christian1, Author
Valla, Pierre G.1, Author
Sternai, Pietro1, Author
Simon‐Labric, Thibaud1, Author
Gautheron, Cécile1, Author
Cuffey, Kurt M.1, Author
Grujic, Djordje1, Author
Bernet, Matthias1, Author
Martinod, Joseph1, Author
Ghiglione, Matias C.1, Author
Reiners, Peter1, Author
Willett, Chelsea1, Author
Shuster, David1, Author
Herman, Frédéric1, Author
Baumgartner, Lukas1, Author
Braun, Jean2, Author              
Affiliations:
1External Organizations, ou_persistent22              
24.7 Earth Surface Process Modelling, 4.0 Geosystems, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_1729888              

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 Abstract: High-relief glacial valleys shape the modern topography of the Southern Patagonian Andes, but their formation remains poorly understood. Two Miocene plutonic complexes in the Andean retroarc, the Fitz Roy (49°S) and Torres del Paine (51°S) massifs, were emplaced between 16.9–16.4 Ma and 12.6–12.4 Ma, respectively. Subduction of oceanic ridge segments initiated ca. 16 Ma at 54°S, leading to northward opening of a slab window with associated mantle upwelling. The onset of major glaciations caused drastic topographic changes since ca. 7 Ma. To constrain the respective contributions of tectonic-mantle dynamics and fluvio-glacial erosion to rock exhumation and landscape evolution, we perform inverse thermal modeling of a new data set of zircon and apatite (U-Th)/He from the two massifs, complemented by apatite 4He/3He data for Torres del Paine. Our results show rapid rock exhumation recorded only in the Fitz Roy massif between 10 and 8 Ma, which we ascribe to local mantle upwelling forcing surface uplift and intensified erosion around 49°S. Both massifs record a pulse of rock exhumation between 7 and 4 Ma, which we interpret as enhanced erosion during the beginning of Patagonian glaciations. After a period of erosional and tectonic quiescence in the Pliocene, increased rock exhumation since 3–2 Ma is interpreted as the result of alpine glacial valley carving promoted by reinforced glacial-interglacial cycles. This study highlights that glacial erosion was the main driver to rock exhumation in the Patagonian retroarc since 7 Ma, but that mantle upwelling might be a driving force to rock exhumation as well.

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 Dates: 2024-07-232024
 Publication Status: Finally published
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 Rev. Type: Peer
 Identifiers: DOI: 10.1029/2023TC007914
GFZPOF: p4 T3 Restless Earth
OATYPE: Hybrid Open Access
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Title: Tectonics
Source Genre: Journal, SCI, Scopus
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Pages: - Volume / Issue: 43 (7) Sequence Number: e2023TC007914 Start / End Page: - Identifier: ISSN: 0278-7407
ISSN: 1944-9194
CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/journals469
Publisher: American Geophysical Union (AGU)
Publisher: Wiley