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Bayona, A.; Manea, V.C.; Yoshioka, S. (2025) Cenozoic evolution of the Great Arc of the Caribbean and Lesser Antilles slabs: A perspective from a 3D numerical subduction model. Tectonophysics, 911. doi:10.1016/j.tecto.2025.230849

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Reference TypeJournal (article/letter/editorial)
TitleCenozoic evolution of the Great Arc of the Caribbean and Lesser Antilles slabs: A perspective from a 3D numerical subduction model
JournalTectonophysics
AuthorsBayona, A.Author
Manea, V.C.Author
Yoshioka, S.Author
Year2025 (August)Volume911
PublisherElsevier BV
DOIdoi:10.1016/j.tecto.2025.230849Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID18698540Long-form Identifiermindat:1:5:18698540:9
GUID0
Full ReferenceBayona, A.; Manea, V.C.; Yoshioka, S. (2025) Cenozoic evolution of the Great Arc of the Caribbean and Lesser Antilles slabs: A perspective from a 3D numerical subduction model. Tectonophysics, 911. doi:10.1016/j.tecto.2025.230849
Plain TextBayona, A.; Manea, V.C.; Yoshioka, S. (2025) Cenozoic evolution of the Great Arc of the Caribbean and Lesser Antilles slabs: A perspective from a 3D numerical subduction model. Tectonophysics, 911. doi:10.1016/j.tecto.2025.230849
In(2025) Tectonophysics Vol. 911. Elsevier BV

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Amaru (2007) Global travel time tomography with 3-D reference models 274
Chen (2021) Nat. Commun. Caribbean plate tilted and actively dragged eastwards by low-viscosity asthenospheric flow 12
Chen (2024) Earth Planet. Sci. Lett. Lesser Antilles slab reconstruction reveals lateral slab transport under the Caribbean since 50 Ma 627
Collier (2010)
Fraters (2019) Towards numerical modelling of natural subduction systems with an application to Eastern Caribbean subduction 185
Giunta (2014)
Giunta (2006) Geol. Acta Caribbean Plate margin evolution: constraints and current problems 4, 265
Goes (2019) Eos Project VoiLA: volatile recycling in the Lesser Antilles 100, 1
Growdon (2009) J. Geophys. Res. Solid Earth Constraints on mantle flow at the Caribbean-South American plate boundary inferred from shear wave splitting 114, 1
Hauff (1997) Int. J. Earth Sci. A Mid cretaceous origin for the GalĂĄpagos hotspot: volcanological, petrological and geochemical evidence from Costa Rican oceanic crustal segments 86, 141
Jolly (1998) Volcanism, tectonics, and stratigraphic correlations in Puerto Rico 322
Kneller (2007) J. Geophys. Res. Solid Earth Stress, strain, and B-type olivine fabric in the fore-arc mantle: sensitivity tests using high-resolution steady-state subduction zone models 112, 1
McNamara (2004) J. Geophys. Res. Solid Earth Thermochemical structures within a spherical mantle: superplumes or piles? 109, 1
Not Yet Imported: Earth and Planetary Science Letters - journal-article : 10.1016/j.epsl.2021.116909

If you would like this item imported into the Digital Library, please contact us quoting Journal ID
Not Yet Imported: - journal-article : 10.1016/j.grj.2014.02.001

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Pindell (1990) Geological arguments suggesting a Pacific origin for the Caribbean Plate
Pindell (2015) , 131
Ren (2007) J. Geophys. Res. Solid Earth Understanding seismic heterogeneities in the lower mantle beneath the Americas from seismic tomography and plate tectonic history 112, 1
Rui (2022) Lithos Early Cretaceous subduction initiation of the proto-Caribbean plate: geochronological and geochemical evidence from gabbros of the Moa-Baracoa ophiolitic massif, Eastern Cuba 418–419
Tan (2012) CitcomS: user manual 3.2.0
Turcotte (2014)
Yan (2021) J. Geophys. Res. Solid Earth New Uppermost Mantle Pn velocity and anisotropy model of the Eastern Caribbean 126, 1


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