Magnetotelluric (MT) data can image the electrical resistivity of the entire lithospheric column and are therefore one of the most important data sources for understanding the structure, composition and evolution of the lithosphere. However, interpretations of MT data from stable lithosphere are often ambiguous. Recent results from mineral physics studies show that, from the mid-crust to the base of the lithosphere, temperature and the hydrogen content of nominally anhydrous minerals are the two most important controls on electrical conductivity. Graphite films on mineral grain boundaries also enhance conductivity but are stable only to the uppermost mantle. The thermal profile of most stable lithosphere can be well constrained, so the two ...
Electrical conductivity is a parameter which characterizes composition and physical state of the Ear...
The Southern Alps Electrical Conductor (SAC), identified from magnetotelluric surveys of the South I...
Long period magnetotellurics (MT), a deep-probing, natural-source electromagnetic geophysical method...
After 70 years of development, magnetotelluric (MT), a remote sensing technique for subsurface elect...
This article discusses the problem of the mineralogical-petrographic interpretation of the "anomalou...
Long-period magnetotelluric (MT) data were collected in the Yilgarn Craton, Western Australia, in a ...
This article discusses the problem of the mineralogical-petrographic interpretation of the "anomalou...
In its ability to retain signatures of tectonic events that enrich or deplete its fertilization stat...
From long-period magnetotelluric data across the Gawler Craton, we obtain a three-dimensional resist...
Active or ancient tectonomagmatic processes operating within the crust and upper mantle may in-trodu...
Magnetotelluric (MT) imaging studies in multiple Australian mineral districts and in the Missouri Ir...
From the very beginning of the magnetotelluric (MT) studies two notions have been coupled to each ot...
We have compiled both laboratory and worldwide field data on electrical conductivity to help underst...
Magnetotelluric (MT) data allow geoscientists to investigate the link between mineralisation and lit...
Geomagnetic induction techniques have been used to study the structure of the crust and upper mantle...
Electrical conductivity is a parameter which characterizes composition and physical state of the Ear...
The Southern Alps Electrical Conductor (SAC), identified from magnetotelluric surveys of the South I...
Long period magnetotellurics (MT), a deep-probing, natural-source electromagnetic geophysical method...
After 70 years of development, magnetotelluric (MT), a remote sensing technique for subsurface elect...
This article discusses the problem of the mineralogical-petrographic interpretation of the "anomalou...
Long-period magnetotelluric (MT) data were collected in the Yilgarn Craton, Western Australia, in a ...
This article discusses the problem of the mineralogical-petrographic interpretation of the "anomalou...
In its ability to retain signatures of tectonic events that enrich or deplete its fertilization stat...
From long-period magnetotelluric data across the Gawler Craton, we obtain a three-dimensional resist...
Active or ancient tectonomagmatic processes operating within the crust and upper mantle may in-trodu...
Magnetotelluric (MT) imaging studies in multiple Australian mineral districts and in the Missouri Ir...
From the very beginning of the magnetotelluric (MT) studies two notions have been coupled to each ot...
We have compiled both laboratory and worldwide field data on electrical conductivity to help underst...
Magnetotelluric (MT) data allow geoscientists to investigate the link between mineralisation and lit...
Geomagnetic induction techniques have been used to study the structure of the crust and upper mantle...
Electrical conductivity is a parameter which characterizes composition and physical state of the Ear...
The Southern Alps Electrical Conductor (SAC), identified from magnetotelluric surveys of the South I...
Long period magnetotellurics (MT), a deep-probing, natural-source electromagnetic geophysical method...