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Seismic reflection along the path of the Mediterranean Undercurrent. Continental Shelf Research. 29:1848–1860.
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2009. Seismic structure of the Central Tyrrhenian basin: Geophysical constraints on the nature of the main crustal domains. Journal of Geophysical Research: Solid Earth. 119:52–70.
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2014. Sequential faulting explains the asymmetry and extension discrepancy of conjugate margins.. Nature. 468:294–9.
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2014. Strike-slip faults mediate the rise of crustal-derived fluids and mud volcanism in the deep sea. Geology. 43:339–342.
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2015. Strike-slip faults mediate the rise of crustal-derived fluids and mud volcanism in the deep sea. Geology. 43:339–342.
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2015. Structure and Potential Seismogenic Sources of the Offshore Bajo Segura Fault Zone, Se Iberian Peninsula (Mediterranean Sea). Looking for the Source of the 1829 Torrevieja Earthquake. Resúmenes de la 1ª Reunión Ibérica sobre Fallas Activas y Paleosismología, Sigüenza, España. :113–116.
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2010. The structure of the Tyrrhenian from integration of multichannel seismic images, wide-angle seismic data, and gravity modeling. Rendiconti Online Societa Geologica Italiana. 21:253–254.
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2012. The structure of the Tyrrhenian from integration of multichannel seismic images, wide-angle seismic data, and gravity modeling. Rendiconti Online Societa Geologica Italiana. 21:253–254.
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2012. Submarine canyon morphologies in the Gulf of Palermo (Southern Tyrrhenian Sea) and possible implications for geo-hazard. Marine Geophysical Research. 32:127–138.
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2011. Submarine canyon morphologies in the Gulf of Palermo (Southern Tyrrhenian Sea) and possible implications for geo-hazard. Marine Geophysical Research. 32:127–138.
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2011. Submarine Landslides and Tsunamis. Earth and Planetary Sciences. 21:69–88.
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2010. Submarine Mass Movements Along a Sediment Starved Margin: The Menorca Channel (Balearic Islands – Western Mediterranean). Submarine Mass Movements and Their Consequences. :329–338.
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2014. Submarine paleoseismology on the Santa Pola fault (Bajo Segura basin, western mediterranean): derivating direct on-fault paleoearthquakes. Una aproximación multidisciplinar al estudio de fallas activas, los terremotos y el riesgo sísmico. :121–124.
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2014. Survival of a submarine canyon during long-term outbuilding of a continental margin. Geology. 40:543–546.
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2012. Synthetic modelling of acoustical propagation applied to seismic oceanography experiments. Geophysical Research Letters. 37:n/a–n/a.
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2010. Técnicas avanzadas de procesado de datos de sísmica de reflexión multicanal aplicadas a mejorar la visualización de fallas activas del Mar de Alborán. Una aproximación multidisciplinar al estudio de fallas activas, los terremotos y el riesgo sísmico. :229–232.
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2014. Tectonic relationships of Southwest Iberia with the allochthons of Northwest Iberia and the Moroccan Variscides. Comptes Rendus Geoscience. 341:103–113.
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2009. The tectonic structure of the Tyrrhenian Basin, a complex interaction among faulting and magmatism. Rendiconti Online Societa Geologica Italiana. 21:251–252.
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2012. Transient erosion in the Valencia Trough turbidite systems, NW Mediterranean Basin. Geomorphology. 130:173–184.
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2011. TSUJAL project and marine survey: Crustal characterization of the Rivera Plate-Jalisco Block boundary and its implications for seismic and tsunami hazard assessment5) TSUJAL Working Group: D. 2nd Iberian meeting on active faults and paleoseismology – IBERFAULT 2014.
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2014. TSUJAL project and marine survey: Crustal characterization of the Rivera Plate-Jalisco Block boundary and its implications for seismic and tsunami hazard assessment5) TSUJAL Working Group: D. 2nd Iberian meeting on active faults and paleoseismology – IBERFAULT 2014.
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2012. A two-phase adaptive finite element method for solid-fluid coupling in complex geometries. International Journal for Numerical Methods in Fluids. 66:82–96.
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