Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) likely controls the strength of the lithospheric mantle in a variety of geodynamic contexts. Unfortunately, laboratory estimates of the strength of olivine deforming by low‐temperature plasticity vary considerably from study to study, limiting confidence in extrapolation to geological conditions. Here we present the results of deformation experiments on olivine single crystals and aggregates conducted in a deformation‐DIA at confining pressures of 5 to 9 GPa and temperatures of 298 to 1473 K. These results demonstrate that, under conditions in which low‐temperature plasticity is the dominant deformation mechanism, fine‐grained samples are strong...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
International audienceRheological properties of mantle minerals and rocks at temperatures (T) approp...
International audienceThe ductile behavior of olivine-rich rocks is critical to constrain thermal co...
Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) lik...
Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) lik...
Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) lik...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
International audienceRheological properties of mantle minerals and rocks at temperatures (T) approp...
International audienceThe ductile behavior of olivine-rich rocks is critical to constrain thermal co...
Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) lik...
Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) lik...
Plastic deformation of olivine at relatively low temperatures (i.e., low‐temperature plasticity) lik...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
The strength of the lithosphere is typically modelled based on constitutive equations for steady-sta...
The strength of olivine at low temperatures and high stresses in Earth’s lithospheric mantle exerts ...
International audienceRheological properties of mantle minerals and rocks at temperatures (T) approp...
International audienceThe ductile behavior of olivine-rich rocks is critical to constrain thermal co...