Localized shear in the deep lithosphere beneath the San Andreas fault system
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Title
Localized shear in the deep lithosphere beneath the San Andreas fault system
Authors
Keywords
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Journal
GEOLOGY
Volume 42, Issue 4, Pages 295-298
Publisher
Geological Society of America
Online
2014-02-26
DOI
10.1130/g35128.1
References
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Related references
Note: Only part of the references are listed.- Evolutionary aspects of lithosphere discontinuity structure in the western U.S.
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- USArray Receiver Function Images of the Lithosphere-Asthenosphere Boundary
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- High-resolution imaging of the deep anisotropic structure of the San Andreas Fault system beneath southern California
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- Using short-term postseismic displacements to infer the ambient deformation conditions of the upper mantle
- (2011) Andrew M. Freed et al. JOURNAL OF GEOPHYSICAL RESEARCH
- The role of crustal quartz in controlling Cordilleran deformation
- (2011) Anthony R. Lowry et al. NATURE
- Lithospheric Thinning Beneath Rifted Regions of Southern California
- (2011) V. Lekic et al. SCIENCE
- The Lithosphere-Asthenosphere Boundary
- (2010) Karen M. Fischer et al. Annual Review of Earth and Planetary Sciences
- Major intracontinental strike-slip faults and contrasts in lithospheric strength
- (2010) P. Molnar et al. Geosphere
- North American lithospheric discontinuity structure imaged byPsandSpreceiver functions
- (2010) David L. Abt et al. JOURNAL OF GEOPHYSICAL RESEARCH
- Upper mantle deformation beneath the North American–Pacific plate boundary in California fromSKSsplitting
- (2010) Mickael Bonnin et al. JOURNAL OF GEOPHYSICAL RESEARCH
- Complex and variable crustal and uppermost mantle seismic anisotropy in the western United States
- (2010) Fan-Chi Lin et al. Nature Geoscience
- Rheology of the Lower Crust and Upper Mantle: Evidence from Rock Mechanics, Geodesy, and Field Observations
- (2008) Roland Bürgmann et al. Annual Review of Earth and Planetary Sciences
- Aseismic slip and fault-normal strain along the central creeping section of the San Andreas fault
- (2008) F. Rolandone et al. GEOPHYSICAL RESEARCH LETTERS
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