International audienceUnderstanding mantle flow is key to elucidate how deep Earth dynamics relate to tectonics at the global scale. The convective mass transport is reflected in lateral variations of the gravity field, seismic velocities, as well as deformations of the Earth's surface. Yet, upper to mid-mantle dynamics have been difficult to constrain at the medium scales of thousands of km. Here, we analyze the second-order horizontal derivatives of seafloor topography and of the gravity potential over the Pacific and Northern Indian ocean basins, and provide evidence for periodic undulations of 1600-2000 km wavelength in both signals, elongated along the direction of absolute plate motion. We investigate potential crustal and lithospheri...
Seismic, topographic and gravity data show that there are two important scales of mantle convection....
International audienceMantle plumes were conceived as thin, vertical conduits in which buoyant, hot ...
The evolution of the planetary interior during plate tectonics is controlled by slow convection with...
International audienceUnderstanding mantle flow is key to elucidate how deep Earth dynamics relate t...
Small-scale convection beneath the oceanic plates has been invoked to explain off-axis non-plume vol...
The existence of undulations of the geoid, gravity and bathymetry in ocean basins, as well as anomal...
While the bulk of topography on Earth is generated and maintained by variations in the thickness and...
Seismic tomography reveals two large, low-shear velocity provinces (LLSVPs) beneath Africa and the P...
One of the most pronounced geoid lows on Earth lies in the Indian Ocean just south of the Indian pen...
Convective circulation of the Earth’s mantle maintains some fraction of surface topography that vari...
Earth's surface topography is a direct physical expression of our planet's dynamics. Most is isostat...
Viscous convection within the mantle is linked to tectonic plate motions and deforms Earth’s surface...
Whether the two large low-shear velocity provinces (LLSVPs) at the base of Earth's mantle are wide c...
International audienceThe destabilization of oceanic lithosphere by small scale convection at its ba...
The global geoid is characterized by a semi-continuous belt of lows that surround the Pacific Ocean,...
Seismic, topographic and gravity data show that there are two important scales of mantle convection....
International audienceMantle plumes were conceived as thin, vertical conduits in which buoyant, hot ...
The evolution of the planetary interior during plate tectonics is controlled by slow convection with...
International audienceUnderstanding mantle flow is key to elucidate how deep Earth dynamics relate t...
Small-scale convection beneath the oceanic plates has been invoked to explain off-axis non-plume vol...
The existence of undulations of the geoid, gravity and bathymetry in ocean basins, as well as anomal...
While the bulk of topography on Earth is generated and maintained by variations in the thickness and...
Seismic tomography reveals two large, low-shear velocity provinces (LLSVPs) beneath Africa and the P...
One of the most pronounced geoid lows on Earth lies in the Indian Ocean just south of the Indian pen...
Convective circulation of the Earth’s mantle maintains some fraction of surface topography that vari...
Earth's surface topography is a direct physical expression of our planet's dynamics. Most is isostat...
Viscous convection within the mantle is linked to tectonic plate motions and deforms Earth’s surface...
Whether the two large low-shear velocity provinces (LLSVPs) at the base of Earth's mantle are wide c...
International audienceThe destabilization of oceanic lithosphere by small scale convection at its ba...
The global geoid is characterized by a semi-continuous belt of lows that surround the Pacific Ocean,...
Seismic, topographic and gravity data show that there are two important scales of mantle convection....
International audienceMantle plumes were conceived as thin, vertical conduits in which buoyant, hot ...
The evolution of the planetary interior during plate tectonics is controlled by slow convection with...