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Linking megathrust earthquakes to brittle deformation in a fossil accretionary complex

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BORIS DOI
10.7892/boris.69859
Publisher DOI
10.1038/ncomms8504
PubMed ID
26105966
Description
Seismological data from recent subduction earthquakes suggest that megathrust earthquakes induce transient stress changes in the upper plate that shift accretionary wedges into an unstable state. These stress changes have, however, never been linked to geological structures preserved in fossil accretionary complexes. The importance of coseismically induced wedge failure has therefore remained largely elusive. Here we show that brittle faulting and vein formation in the palaeo-accretionary complex of the European Alps record stress changes generated by subduction-related earthquakes. Early veins formed at shallow levels by bedding-parallel shear during coseismic compression of the outer wedge. In contrast, subsequent vein formation occurred by normal faulting and extensional fracturing at deeper levels in response to coseismic extension of the inner wedge. Our study demonstrates how mineral veins can be used to reveal the dynamics of outer and inner wedges, which respond in opposite ways to megathrust earthquakes by compressional and extensional faulting, respectively.
Date of Publication
2015-06-24
Publication Type
Article
Subject(s)
500 Science > 550 Earth sciences & geology
Language(s)
en
Contributor(s)
Dielforder, Armin Raimund
Institut für Geologie
Vollstaedt, Haukeorcid-logo
Institut für Geologie
Vennemann, Torsten
Berger, Alfonsorcid-logo
Institut für Geologie
Herwegh, Marcoorcid-logo
Institut für Geologie
Additional Credits
Center for Space and Habitability (CSH)
NCCR PlanetS
Physics Institute, Space Research and Planetary Sciences
Institut für Geologie
Series
Nature communications
Publisher
Nature Publishing Group
ISSN
2041-1723
Access(Rights)
open.access
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