GLAD-M35: a joint P and S global tomographic model with uncertainty quantification

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Abstract

We present our third and final generation joint P and S global adjoint tomography (GLAD) model, GLAD-M35, and quantify its uncertainty based on a low-rank approximation of the inverse Hessian. Starting from our second-generation model, GLAD-M25, we added 680 new earthquakes to the database for a total of 2160 events. New P-wave categories are included to compensate for the imbalance between P- and S-wave measurements, and we enhanced the window selection algorithm to include more major-arc phases, providing better constraints on the structure of the deep mantle and more than doubling the number of measurement windows to 40 million. Two stages of a Broyden–Fletcher–Goldfarb–Shanno (BFGS) quasi-Newton inversion were performed, each comprising five iterations. With this BFGS update history, we determine the model’s standard deviation and resolution length through randomized singular value decomposition.

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Cui, C., Lei, W., Liu, Q., Peter, D., Bozdag, E., Tromp, J., … Pugmire, D. (2024). GLAD-M35: a joint P and S global tomographic model with uncertainty quantification. Geophysical Journal International, 239(1), 478–502. https://doi.org/10.1093/gji/ggae270

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