International audienceDynamic earthquake source inversions aim to determine the spatial distribution of initial stress and friction parameters leading to dynamic rupture models that reproduce observed ground motion data. Such inversions are challenging, particularly due to their high computational burden; thus, so far, only few attempts have been made. Using a highly efficient rupture simulation code, we introduce a novel method to generate a representative sample of acceptable dynamic models from which dynamic source parameters and their uncertainties can be assessed. The method assumes a linear slip‐weakening friction law and spatially variable prestress, strength, and characteristic slip‐weakening distance along the fault. The inverse pr...
Earthquakes cause lasting changes in static equilibrium, resulting in global deformation fields that...
We present an inversion strategy capable of using real-time high-rate GPS data to simultaneously sol...
We use a two-stage nonlinear technique to invert strong motions records and geodetic data to retriev...
International audienceDynamic earthquake source inversions aim to determine the spatial distribution...
Dynamic earthquake source inversions aim to determine the spatial distribution of initial stress and...
International audienceIn 2016 Central Italy was struck by a sequence of three normal‐faulting earthq...
In 2016 Central Italy was struck by a sequence of three normal‐faulting earthquakes with momen...
In 2016 Central Italy was struck by a sequence of three normal‐faulting earthquakes with moment magn...
International audienceWe analyse the scaling and distribution of average dynamic source properties (...
Abstract Dynamic rupture inversion is a powerful tool for learning why and how faults fail, but much...
The estimation of finite fault earthquake source models is an inherently underdetermined problem: t...
We present a fully Bayesian inversion of kinematic rupture parameters for the 2011 M_w 9 Tohoku-oki,...
We present an inversion strategy capable of using real-time high-rate GPS data to simultaneously sol...
Earthquakes cause lasting changes in static equilibrium, resulting in global deformation fields that...
We present an inversion strategy capable of using real-time high-rate GPS data to simultaneously sol...
We use a two-stage nonlinear technique to invert strong motions records and geodetic data to retriev...
International audienceDynamic earthquake source inversions aim to determine the spatial distribution...
Dynamic earthquake source inversions aim to determine the spatial distribution of initial stress and...
International audienceIn 2016 Central Italy was struck by a sequence of three normal‐faulting earthq...
In 2016 Central Italy was struck by a sequence of three normal‐faulting earthquakes with momen...
In 2016 Central Italy was struck by a sequence of three normal‐faulting earthquakes with moment magn...
International audienceWe analyse the scaling and distribution of average dynamic source properties (...
Abstract Dynamic rupture inversion is a powerful tool for learning why and how faults fail, but much...
The estimation of finite fault earthquake source models is an inherently underdetermined problem: t...
We present a fully Bayesian inversion of kinematic rupture parameters for the 2011 M_w 9 Tohoku-oki,...
We present an inversion strategy capable of using real-time high-rate GPS data to simultaneously sol...
Earthquakes cause lasting changes in static equilibrium, resulting in global deformation fields that...
We present an inversion strategy capable of using real-time high-rate GPS data to simultaneously sol...
We use a two-stage nonlinear technique to invert strong motions records and geodetic data to retriev...