fabio cammarano
fabio cammarano
Associate Professor, University of Roma Tre
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Cited by
Cited by
Inferring upper-mantle temperatures from seismic velocities
F Cammarano, S Goes, P Vacher, D Giardini
Physics of the Earth and Planetary Interiors 138 (3-4), 197-222, 2003
Geophysical investigations of habitability in ice‐covered ocean worlds
SD Vance, MP Panning, S Stähler, F Cammarano, BG Bills, G Tobie, ...
Journal of Geophysical Research: Planets 123 (1), 180-205, 2018
Caveats on tomographic images
GR Foulger, GF Panza, IM Artemieva, ID Bastow, F Cammarano, ...
Terra Nova 25 (4), 259-281, 2013
Insights into the nature of the transition zone from physically constrained inversion of long-period seismic data
F Cammarano, B Romanowicz
Proceedings of the National Academy of Sciences 104 (22), 9139-9144, 2007
Quantitative integration of geophysical methods for archaeological prospection
S Piro, P Mauriello, F Cammarano
Archaeological Prospection 7 (4), 203-213, 2000
Thermochemical interpretation of one-dimensional seismic reference models for the upper mantle: evidence for bias due to heterogeneity
L Cobden, S Goes, F Cammarano, JAD Connolly
Geophysical Journal International 175 (2), 627-648, 2008
One‐dimensional physical reference models for the upper mantle and transition zone: Combining seismic and mineral physics constraints
F Cammarano, A Deuss, S Goes, D Giardini
Journal of Geophysical Research: Solid Earth 110 (B1), 2005
Synthetic seismic signature of thermal mantle plumes
S Goes, F Cammarano, U Hansen
Earth and Planetary Science Letters 218 (3-4), 403-419, 2004
Seismic, petrological and geodynamical constraints on thermal and compositional structure of the upper mantle: global thermochemical models
F Cammarano, P Tackley, L Boschi
Geophysical Journal International 187 (3), 1301-1318, 2011
Thermochemical interpretation of 1‐D seismic data for the lower mantle: The significance of nonadiabatic thermal gradients and compositional heterogeneity
L Cobden, S Goes, M Ravenna, E Styles, F Cammarano, K Gallagher, ...
Journal of Geophysical Research: Solid Earth 114 (B11), 2009
Is a pyrolitic adiabatic mantle compatible with seismic data?
F Cammarano, S Goes, A Deuss, D Giardini
Earth and Planetary Science Letters 232 (3-4), 227-243, 2005
Inferring the thermochemical structure of the upper mantle from seismic data
F Cammarano, B Romanowicz, L Stixrude, C Lithgow-Bertelloni, W Xu
Geophysical Journal International 179 (2), 1169-1185, 2009
Hydration of marginal basins and compositional variations within the continental lithospheric mantle inferred from a new global model of shear and compressional velocity
A Tesoniero, L Auer, L Boschi, F Cammarano
Journal of Geophysical Research: Solid Earth 120 (11), 7789-7813, 2015
Global thermal models of the lithosphere
F Cammarano, M Guerri
Geophysical Journal International 210 (1), 56-72, 2017
Long‐period seismology on Europa: 2. Predicted seismic response
M Panning, V Lekic, M Manga, F Cammarano, B Romanowicz
Journal of Geophysical Research: Planets 111 (E12), 2006
Integration of high resolution geophysical methods. Detection of shallow depth bodies of archaeological interest
F Cammarano, P Mauriello, D Patella, S Piro, F Rosso, L Versino
Role of iron‐spin transition in ferropericlase on seismic interpretation: A broad thermochemical transition in the mid mantle?
F Cammarano, H Marquardt, S Speziale, PJ Tackley
Geophysical Research Letters 37 (3), 2010
Effects of chemical composition, water and temperature on physical properties of continental crust
M Guerri, F Cammarano, JAD Connolly
Geochemistry, Geophysics, Geosystems 16 (7), 2431-2449, 2015
Long‐period seismology on Europa: 1. Physically consistent interior models
F Cammarano, V Lekic, M Manga, M Panning, B Romanowicz
Journal of Geophysical Research: Planets 111 (E12), 2006
Local earthquakes detection: A benchmark dataset of 3-component seismograms built on a global scale
F Magrini, D Jozinović, F Cammarano, A Michelini, L Boschi
Artificial Intelligence in Geosciences 1, 1-10, 2020
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