HR: 0800h
AN: G11A-0776 [Abstracts]
TI: Slip rate of the Calico fault: Implications for anomalous geodetic strain accumulation across the
Eastern California shear zone
AU: * Oskin, M
EM: oskin@unc.edu
AF: Department of Geological Sciences, Campus Box #3315
University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-3315
United States
AU: Perg, L
EM: lperg@umn.edu
AF: Department of Geology and Geophysics, University of Minnesota
310 Pillsbury Drive SE, Minneapolis, MN 5455-0219
United States
AU: Blumentritt, D
EM: blum0123@umn.edu
AF: Department of Geology and Geophysics, University of Minnesota
310 Pillsbury Drive SE, Minneapolis, MN 5455-0219
United States
AU: Mukhopadhyay, S
EM: sujoy@dtm.ciw.edu
AF: Department of Earth and Planetary Sciences, 20 Oxford Street
Harvard University, Cambridge, MA 02138
United States
AU: Iriondo, A
EM: iriondo@usgs.gov
AF: U.S. Geological Survey, Argon Thermochronology Lab
MS 974, Box 25064, Denverl, CO 80225-0046
United States
AB:
Recent earthquake activity and high geodetically derived fault-slip rates across the Eastern California shear zone motivate
comparisons with long-term geologic deformation rates to test for transient strain accumulation. We report new geologic
slip-rate results from a transect at 34.8$\deg$N across the central Mojave Desert where six dextral faults (Helendale,
Lenwood, Camp Rock, Calico, Pisgah-Bullion, and Ludlow) accommodate all late Quaternary right-lateral displacement.
High-resolution LIDAR topography data have been successfully acquired across all six faults as part of a project to measure a
complete budget of long-term geologic fault slip rates. Field investigations of the northern Rodman Mountains conducted with
the aid of the new topography data identified several surfaces dextrally offset by the Calico fault. A preliminary slip rate
of 1.3$\pm$0.3 mm/yr is calculated from an 800$\pm$ 200 m offset of alluvial fan deposits containing clasts of the ca. 600
ka Pipkin basalt flow. Cosmogenic surface exposure age dating of offset geomorphic surfaces and refined Ar/Ar dating of the
basalt flow, in progress, will provide multiple constraints of this fault slip rate. The slip rate of the Calico fault is
more than twice that of the Blackwater fault, located on strike with the Calico fault in the northwest Mojave Desert. This
discrepancy supports that strain is transferred away from the Calico fault and other adjacent northwest-striking dextral
faults onto domino-style rotating blocks bounded by sinistral faults in the Fort Irwin region. A newly identified active
thrust fault and fault-related fold bounding the northern Rodman mountains accommodates shortening east of the Calico fault
that may be caused by space problems at the intersection of these conjugate fault systems. Overall, slip rate on the Calico
fault, together with existing paleoseismic histories on adjacent faults, does not account for more than 5 mm/yr of strain
accumulation across the Eastern California shear zone. Geodetic strain rates of 10 mm/yr or more across this region indicate
either province-wide transient strain accumulation or that paleoseismic data consistently underestimate long-term fault slip
rates. Additional measurements of offset features for each fault that average several earthquake cycles are required to test
these alternative hypotheses.
DE: 7221 Paleoseismology
DE: 8107 Continental neotectonics
DE: 8159 Rheology--crust and lithosphere
DE: 1208 Crustal movements--intraplate (8110)
SC: Geodesy [G]
MN: 2004 AGU Fall Meeting