The state of tectonic stress in the epicentral area of the 17 January 1994, Northridge earthquake (Mw 6.7) is investigated by applying a stress inversion method to P-wave polarity data from earthquakes in Northridge from July 1981 to January 1994 and from the Northridge aftershocks during January 1994 to December 1995. A 3-D crustal model is used to trace the rays taking off from the hypocenter, which reduced the effects of large structural heterogeneities on the determination of the stress tensor. We found significant temporal changes of stress orientations induced by the Northridge earthquake. The principal pressure (P) axis is oriented N32°E from 1981 to June 1992, and N30°E from 28 June 1992 to 16 January 1994, suggesting that the stres...
We use time-domain pulse widths to estimate static stress drops for 279 M_L 2.5 to 4.0 aftershocks o...
We present a new, high spatial resolution image of stress orientation in southern California based o...
Following the M_w 6.7 Northridge earthquake, significant postseismic displacements were resolved wit...
The state of tectonic stress in the epicentral area of the 17 January 1994, Northridge earthquake (M...
Abstract A model of the spatial and temporal distribution of seismicity both be-fore and after the N...
The state of stress in the Eastern California Shear Zone (ECSZ) changed significantly because of the...
Earthquake focal mechanisms from before and after the 1989 Loma Prieta, California earthquake are us...
A detailed 3-D P-wave velocity structure of the crust in the epicentral area of the 17 January, 1994...
A model of stress transfer implies that earthquakes in 1933 and 1952 increased the Conlomb stress at...
Geodetic observations of surface deformation associated with the 1994 Northridge, southern Californi...
International audienceCoulomb stress maps are produced by computing the tensorial stress perturbatio...
[1] Coulomb stress maps are produced by computing the tensorial stress perturbation due to an earthq...
The M_w 6.7 Northridge earthquake occurred on January 17, 1994, beneath the San Fernando Valley. Two...
We determined the source process of the 1994 Northridge earthquake in relation to the aftershock mec...
Earthquake focal mechanisms are often inverted to obtain the deviatoric stress field. Because shear ...
We use time-domain pulse widths to estimate static stress drops for 279 M_L 2.5 to 4.0 aftershocks o...
We present a new, high spatial resolution image of stress orientation in southern California based o...
Following the M_w 6.7 Northridge earthquake, significant postseismic displacements were resolved wit...
The state of tectonic stress in the epicentral area of the 17 January 1994, Northridge earthquake (M...
Abstract A model of the spatial and temporal distribution of seismicity both be-fore and after the N...
The state of stress in the Eastern California Shear Zone (ECSZ) changed significantly because of the...
Earthquake focal mechanisms from before and after the 1989 Loma Prieta, California earthquake are us...
A detailed 3-D P-wave velocity structure of the crust in the epicentral area of the 17 January, 1994...
A model of stress transfer implies that earthquakes in 1933 and 1952 increased the Conlomb stress at...
Geodetic observations of surface deformation associated with the 1994 Northridge, southern Californi...
International audienceCoulomb stress maps are produced by computing the tensorial stress perturbatio...
[1] Coulomb stress maps are produced by computing the tensorial stress perturbation due to an earthq...
The M_w 6.7 Northridge earthquake occurred on January 17, 1994, beneath the San Fernando Valley. Two...
We determined the source process of the 1994 Northridge earthquake in relation to the aftershock mec...
Earthquake focal mechanisms are often inverted to obtain the deviatoric stress field. Because shear ...
We use time-domain pulse widths to estimate static stress drops for 279 M_L 2.5 to 4.0 aftershocks o...
We present a new, high spatial resolution image of stress orientation in southern California based o...
Following the M_w 6.7 Northridge earthquake, significant postseismic displacements were resolved wit...