We use thermodynamically self-consistent and hybrid methods to analyze the correlation of important physical parameters (e.g. bulk density, elastic moduli) with bulk Mg# and modal composition in mantle peridotites at upper mantle conditions. Temperature (anharmonic and anelastic), pressure and compositional derivatives for all these parameters are evaluated. The results show that the widely used correlations between Vp/Vs and Mg# in peridotites are strictly valid only for garnet-bearing assemblages at temperatures 220 km) lithospheric domains. In addition, we show that for most of the upper mantle the expected Δ(Vp/Vs) values associated with compositional variations are smaller than the resolution limit of current seismological methods. Al...
Cosmic abundances of elements and meteorite analogies indicate an ultrabasic mantle. Detailed review...
Comparison of seismic velocities in mantle minerals, under mantle conditions, with seismic data is a...
Lower mantle tomography models consistently feature an increase in the ratio of shear-wave velocity ...
We use thermodynamically self-consistent and hybrid methods to analyze the correlation of important ...
International audienceThe pyrolite model is one of the possible compositions of the Earth's lower ma...
Constraints on mantle temperatures are fundamental for a better understanding of the dynamics of the...
Comparison of seismic velocities in mantle minerals, under mantle conditions, with seismic data is a...
Unravelling the physical state and properties of mantle rocks is crucial for understanding both plat...
We propose a new method to constrain lateral variations of temperature and composition in the lower ...
We test a mineral physics model of the upper mantle against seismic observations. The model is based...
The elastic properties of candidate mantle phases are used to test the viability of olivine‐rich (py...
Experiments on rock materials and volatile components provide an array of phase equilibrium boundari...
Mineralogical modeling of the lower mantle critically depends on thermoelastic parameters, such as t...
Partial melting and melt extraction in the Earth's upper mantle can significantly modify the composi...
Cosmic abundances of elements and meteorite analogies indicate an ultrabasic mantle. Detailed review...
Comparison of seismic velocities in mantle minerals, under mantle conditions, with seismic data is a...
Lower mantle tomography models consistently feature an increase in the ratio of shear-wave velocity ...
We use thermodynamically self-consistent and hybrid methods to analyze the correlation of important ...
International audienceThe pyrolite model is one of the possible compositions of the Earth's lower ma...
Constraints on mantle temperatures are fundamental for a better understanding of the dynamics of the...
Comparison of seismic velocities in mantle minerals, under mantle conditions, with seismic data is a...
Unravelling the physical state and properties of mantle rocks is crucial for understanding both plat...
We propose a new method to constrain lateral variations of temperature and composition in the lower ...
We test a mineral physics model of the upper mantle against seismic observations. The model is based...
The elastic properties of candidate mantle phases are used to test the viability of olivine‐rich (py...
Experiments on rock materials and volatile components provide an array of phase equilibrium boundari...
Mineralogical modeling of the lower mantle critically depends on thermoelastic parameters, such as t...
Partial melting and melt extraction in the Earth's upper mantle can significantly modify the composi...
Cosmic abundances of elements and meteorite analogies indicate an ultrabasic mantle. Detailed review...
Comparison of seismic velocities in mantle minerals, under mantle conditions, with seismic data is a...
Lower mantle tomography models consistently feature an increase in the ratio of shear-wave velocity ...