Physics
Scientific paper
May 2004
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=2004georl..3112s04r&link_type=abstract
Geophysical Research Letters, Volume 31, Issue 12, CiteID L12S04
Physics
8
Geodesy And Gravity: Local Gravity Anomalies And Crustal Structure, Seismology: Earthquake Parameters, Seismology: Seismicity And Seismotectonics, Tectonophysics: Tomography
Scientific paper
Taking advantage of large datasets of both gravity and elastic wave arrival time observations available for the Parkfield, California region, we generated an image consistent with both types of data. Among a variety of strategies, the best result was obtained from a simultaneous inversion with a stability requirement that encouraged the perturbed model to remain close to a starting model consisting of a best fit to the arrival time data. The preferred model looks essentially the same as the best-fit arrival time model in areas where ray coverage is dense, with differences being greatest at shallow depths and near the edges of the model where ray paths are few. Earthquake locations change by no more than about 100 m, the general effect being migration of the seismic zone to the northeast, closer to the surface trace of the San Andreas Fault.
McPhee D.
Roecker Steve
Thurber Clifford
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