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Colloquium (193/295): Prof. Brandan Meade – Kinematic imaging and evolution of the California earthquake system without all the stress

Speaker: Prof. Brandan Meade

Affiliation: Harvard

Date: Tuesday, September 29, 2026

Time: 3:30 PM

Location: 3853 Slichter Hall

Speaker Website: https://eps.harvard.edu/research-group/meade-group/


Abstract

Large earthquakes are infrequent while motion across fault systems is persistent. With the modern volume of geodetic data, the problem is no longer data scarcity but inference robustness: what can and cannot be resolved about kinematics on a three-dimensional fault network, and with what uncertainty. Here we describe a method for probabilistic imaging of fault system activity that achieves resolving power through the combination of dense geodetic observations, non-linear coupling constraints, and Hamiltonian Monte Carlo sampling. Applied to the California fault system, we infer heterogeneous interseismic coupling behavior with no general spatial relationship to microseismicity. These estimates of decadal scale fault system state are combined with a statistical seismicity model (without the concepts of stress or friction) to generate synthetic earthquake sequences that provide realizations of coseismic slip partitioning.

Speaker Bio

TBA

Research Expertise

Geodesy/earthquake cycle