We introduce a new method to construct integrated 3-D models of density, temperature, and compositional variations of the crust and upper mantle based on a combined analysis of gravity, seismic, and tomography data with mineral physics constraints. The new technique is applied to North America. In the first stage, we remove the effect of the crust from the observed gravity field and topography, using a new crustal model (NACr2014). In the second step, the residual mantle gravity field and residual topography are inverted to obtain a 3-D density model of the upper mantle. The inversion technique accounts for the notion that these fields are controlled by the same factors but in a different way, e.g., depending on depth and horizontal dimensi...
We present a new global model for the Earth's lithosphere and upper mantle (LithoRef18) obtained thr...
We present a new global model for the Earth's lithosphere and upper mantle (LithoRef18) obtained thr...
Thesis: Ph. D. in Geophysics, Massachusetts Institute of Technology, Department of Earth, Atmospheri...
We introduce a new method to construct integrated 3-D models of density, temperature, and compositio...
We introduce a new method to construct integrated 3-D models of density, temperature, and compositio...
We introduce a new method to construct integrated 3-D models of density, temperature, and compositio...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Variations in density within the earth are the dominant cause of both surface topography--generating...
Abstract To investigate the physical basis for support of topography in the western U.S., we constru...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
We evaluate the effect of temperature variations on strength and effective elastic thickness (Te) of...
We present a new global model for the Earth's lithosphere and upper mantle (LithoRef18) obtained thr...
We present a new global model for the Earth's lithosphere and upper mantle (LithoRef18) obtained thr...
Thesis: Ph. D. in Geophysics, Massachusetts Institute of Technology, Department of Earth, Atmospheri...
We introduce a new method to construct integrated 3-D models of density, temperature, and compositio...
We introduce a new method to construct integrated 3-D models of density, temperature, and compositio...
We introduce a new method to construct integrated 3-D models of density, temperature, and compositio...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Temperature and compositional variations of the North American (NA) lithospheric mantle are estimate...
Variations in density within the earth are the dominant cause of both surface topography--generating...
Abstract To investigate the physical basis for support of topography in the western U.S., we constru...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
Mapping the thermal and compositional structure of the upper mantle requires a combined interpretati...
We evaluate the effect of temperature variations on strength and effective elastic thickness (Te) of...
We present a new global model for the Earth's lithosphere and upper mantle (LithoRef18) obtained thr...
We present a new global model for the Earth's lithosphere and upper mantle (LithoRef18) obtained thr...
Thesis: Ph. D. in Geophysics, Massachusetts Institute of Technology, Department of Earth, Atmospheri...