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  3. 10Be-inferred paleo-denudation rates imply that the mid-Miocene western central Andes eroded as slowly as today

10Be-inferred paleo-denudation rates imply that the mid-Miocene western central Andes eroded as slowly as today

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DOI
10.7892/boris.110938
Publisher DOI
10.1038/s41598-018-20681-x
PubMed ID
29396427
Abstract
Terrestrial cosmogenic nuclide concentrations of detrital minerals yield catchment-wide rates at which hillslopes erode. These estimates are commonly used to infer millennial scale denudation patterns and to identify the main controls on mass-balance and landscape evolution at orogenic scale. The same approach can be applied to minerals preserved in stratigraphic records of rivers, although extracting reliable paleo-denudation rates from Ma-old archives can be limited by the target nuclide’s half-life and by exposure to cosmic radiations after deposition. Slowly eroding landscapes, however, are characterized by the highest cosmogenic radionuclide concentrations; a condition that potentially allows pushing the method’s limits further back in time, provided that independent constraints on the geological evolution are available. Here, we report 13–10 million-year-old paleo-denudation rates from northernmost Chile, the oldest 10Be-inferred rates ever reported. We find that at 13–10 Ma the western Andean Altiplano has been eroding at 1–10 m/Ma, consistent with modern paces in the same setting, and it experienced a period with rates above 10 m/Ma at ~11 Ma. We suggest that the background tectono-geomorphic state of the western margin of the Altiplano has remained stable since the mid- Miocene, whereas intensified runoff since ~11 Ma might explain the transient increase in denudation.
Date Issued
2018
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
Language(s)
en
Author(s)
Madella, Andrea  orcid-logo
Institut für Geologie  
Delunel, Romain  orcid-logo
Institut für Geologie  
Akçar, Naki  orcid-logo
Institut für Geologie  
Schlunegger, Fritz  
Institut für Geologie  
Christl, Marcus
Additional Credits
Institut für Geologie  
Journal
Scientific Reports
Publisher
Nature Publishing Group
ISSN
2045-2322
Access(Rights)
open.access
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