Alessandro M. Forte
Affiliations: | 1985-1990 | Physics | University of Toronto, Toronto, ON, Canada |
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Publications
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Lu C, Forte AM, Simmons NA, et al. (2020) The Sensitivity of Joint Inversions of Seismic and Geodynamic Data to Mantle Viscosity Geochemistry, Geophysics, Geosystems. 21 |
Glišović P, Forte AM. (2019) Two deep-mantle sources for Paleocene doming and volcanism in the North Atlantic. Proceedings of the National Academy of Sciences of the United States of America. 116: 13227-13232 |
Faccenna C, Glišović P, Forte A, et al. (2019) Role of dynamic topography in sustaining the Nile River over 30 million years Nature Geoscience. 12: 1012-1017 |
Walker AM, Dobson DP, Wookey J, et al. (2018) The anisotropic signal of topotaxy during phase transitions in D″ Physics of the Earth and Planetary Interiors. 276: 159-171 |
Glišović P, Forte AM. (2017) On the deep-mantle origin of the Deccan Traps. Science (New York, N.Y.). 355: 613-616 |
Rowley DB, Forte AM, Rowan CJ, et al. (2016) Kinematics and dynamics of the East Pacific Rise linked to a stable, deep-mantle upwelling. Science Advances. 2: e1601107 |
Dowsett H, Dolan A, Rowley D, et al. (2016) The PRISM4 (mid-Piacenzian) paleoenvironmental reconstruction Climate of the Past. 12: 1519-1538 |
Glišović P, Forte AM. (2016) A new back-and-forth iterative method for time-reversed convection modeling: Implications for the Cenozoic evolution of 3-D structure and dynamics of the mantle Journal of Geophysical Research: Solid Earth. 121: 4067-4084 |
Austermann J, Pollard D, Mitrovica JX, et al. (2015) The impact of dynamic topography change on antarctic ice sheet stability during the mid-pliocene warm period Geology. 43: 927-930 |
Glišović P, Forte AM. (2015) Importance of initial buoyancy field on evolution of mantle thermal structure: Implications of surface boundary conditions Geoscience Frontiers. 6: 3-22 |