The two large low shear-wave velocity provinces (LLSVPs) that dominate lower-mantle structure may hold key information on Earth’s thermal and chemical evolution. It is generally accepted that these provinces are hotter than background mantle and are likely the main source of mantle plumes. Increasingly, it is also proposed that they hold a dense (primitive and/or recycled) compositional com- ponent. The principle evidence that LLSVPs may represent thermo-chemical ‘piles’ comes from seismic constraints, including: (i) their long-wavelength nature; (ii) sharp gradients in shear-wave velocity at their margins; (iii) non-Gaussian distributions of deep mantle shear-wave velocity anomalies; (iv) anti-correlated shear-wave and bulk-sound velocity ...
Abstract. Recent seismological studies demonstrate the presence of strong deep mantle elastic hetero...
We evaluate the thermo-chemical state of the lower mantle by analysing the differences in the patter...
Seismic tomography models reveal two large low shear velocity provinces (LLSVPs) that identify large...
Two continent-sized features in the deep mantle, the large low-velocity provinces (LLVPs), influence...
International audienceTwo large low-shear-velocity provinces (LLSVPs) in the deep mantle beneath Afr...
International audienceTwo large low-shear-velocity provinces (LLSVPs) in the deep mantle beneath Afr...
The large low shear‐wave velocity provinces (LLSVP) are thermochemical anomalies in the deep Earth's...
Abstract Seismic tomography indicates that the lowermost mantle, from 2400 km down to the core–mantl...
Two large regions of low shear wave velocity in the deep mantle beneath Africa and the Pacific are g...
Two large regions of low shear wave velocity in the deep mantle beneath Africa and the Pacific are g...
Two large regions of low shear wave velocity in the deep mantle beneath Africa and the Pacific are g...
Seismic tomography reveals two large, low-shear velocity provinces (LLSVPs) beneath Africa and the P...
Seismic tomography reveals two large, low-shear velocity provinces (LLSVPs) beneath Africa and the P...
The two large low shear velocity provinces (LLSVPs) at the base of the lower mantle are prominent fe...
The two large low shear velocity provinces (LLSVPs) at the base of the lower mantle are prominent fe...
Abstract. Recent seismological studies demonstrate the presence of strong deep mantle elastic hetero...
We evaluate the thermo-chemical state of the lower mantle by analysing the differences in the patter...
Seismic tomography models reveal two large low shear velocity provinces (LLSVPs) that identify large...
Two continent-sized features in the deep mantle, the large low-velocity provinces (LLVPs), influence...
International audienceTwo large low-shear-velocity provinces (LLSVPs) in the deep mantle beneath Afr...
International audienceTwo large low-shear-velocity provinces (LLSVPs) in the deep mantle beneath Afr...
The large low shear‐wave velocity provinces (LLSVP) are thermochemical anomalies in the deep Earth's...
Abstract Seismic tomography indicates that the lowermost mantle, from 2400 km down to the core–mantl...
Two large regions of low shear wave velocity in the deep mantle beneath Africa and the Pacific are g...
Two large regions of low shear wave velocity in the deep mantle beneath Africa and the Pacific are g...
Two large regions of low shear wave velocity in the deep mantle beneath Africa and the Pacific are g...
Seismic tomography reveals two large, low-shear velocity provinces (LLSVPs) beneath Africa and the P...
Seismic tomography reveals two large, low-shear velocity provinces (LLSVPs) beneath Africa and the P...
The two large low shear velocity provinces (LLSVPs) at the base of the lower mantle are prominent fe...
The two large low shear velocity provinces (LLSVPs) at the base of the lower mantle are prominent fe...
Abstract. Recent seismological studies demonstrate the presence of strong deep mantle elastic hetero...
We evaluate the thermo-chemical state of the lower mantle by analysing the differences in the patter...
Seismic tomography models reveal two large low shear velocity provinces (LLSVPs) that identify large...