Current deformation in Hispaniola observed from InSAR–derived surface velocities

The oblique convergence between the Caribbean and North American plates is accommodated, in Hispaniola, by left-lateral strike-slip on two major sinistral fault systems and by intra-arc shortening. We apply a Persistent Scatterer Interferometry (PSInSAR) approach to Sentinel-1 data using six tracks acquired between 2016 and 2023 to generate time series of interseismic velocities over the entire island. We merge the resulting ascending and descending tracks with GNSS–derived velocities to determine a spatially-continuous 3D velocity field that documents deformation gradients across large fault systems. The Enriquillo–Plantain Garden fault fits a single locked–fault model, while the Septentrional one potentially involves several sub–faults. Strain in southeastern Haiti and the southwestern Dominican Republic is well modeled by the Jérémie-Malpasse-Bahoruco oblique reverse fault-system, which represents a significant, but overlooked, regional hazard source.

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Publication Details

Journal
Earth and Planetary Science Letters
Published
2026-09-30
DOI
https://doi.org/10.1016/j.epsl.2026.120361
Primary Topic
earthquake and tectonic studies
Type
article
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article

Current deformation in Hispaniola observed from InSAR–derived surface velocities

Bryan Raimbault, E. Calais, Romain Jolivet, Steeve Symithe et al.
Earth and Planetary Science Letters
earthquake and tectonic studies
article

Current deformation in Hispaniola observed from InSAR–derived surface velocities

Bryan Raimbault, E. Calais, Romain Jolivet, Steeve Symithe, Christian Emmanuel
article en

Abstract

The oblique convergence between the Caribbean and North American plates is accommodated, in Hispaniola, by left-lateral strike-slip on two major sinistral fault systems and by intra-arc shortening. We apply a Persistent Scatterer Interferometry (PSInSAR) approach to Sentinel-1 data using six tracks acquired between 2016 and 2023 to generate time series of interseismic velocities over the entire island. We merge the resulting ascending and descending tracks with GNSS–derived velocities to determine a spatially-continuous 3D velocity field that documents deformation gradients across large fault systems. The Enriquillo–Plantain Garden fault fits a single locked–fault model, while the Septentrional one potentially involves several sub–faults. Strain in southeastern Haiti and the southwestern Dominican Republic is well modeled by the Jérémie-Malpasse-Bahoruco oblique reverse fault-system, which represents a significant, but overlooked, regional hazard source.

Earth and Planetary Science LettersVol. 696
Centre National de la Recherche Scientifique (FR), Institut Universitaire de France (FR), Centre National d'Études Spatiales (FR), University of Haiti (HT), École Normale Supérieure (BI), Laboratoire de Géologie de l’École Normale Supérieure (FR)
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earthquake and tectonic studies
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Current deformation in Hispaniola observed from InSAR–derived surface velocities — Bryan Raimbault, E. Calais, et al. · Earth and Planetary Science Letters (2026) | TGRS Research Map | TGRS