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The Microgeodynamics Group in the Department of Earth Sciences, University of Cambridge, tackles problems in rock deformation from the crystal-lattice to lithospheric-plate scales. We develop and employ advanced microanalytical techniques to decipher the processes of rock deformation. High-angular resolution electron backscatter diffraction (HR-EBSD) provides a key tool for quantifying distributions of dislocations and stress heterogeneity within grains. We combine such microstructural analyses with rock deformation experiments to develop a new generation of microphysical models of deformation processes. Analyses of key field sites allow us to up-scale laboratory results to establish the role of microscale processes in macroscopic geodynamics.
The Microgeodynamics Group in the Department of Earth Sciences, University of Cambridge, tackles problems in rock deformation from the crystal-lattice to lithospheric-plate scales. We develop and employ advanced microanalytical techniques to decipher the processes of rock deformation. High-angular resolution electron backscatter diffraction (HR-EBSD) provides a key tool for quantifying distributions of dislocations and stress heterogeneity within grains. We combine such microstructural analyses with rock deformation experiments to develop a new generation of microphysical models of deformation processes. Analyses of key field sites allow us to up-scale laboratory results to establish the role of microscale processes in macroscopic geodynamics.
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Luca Menegon,Giovanni Toffol, Hugo W. van Schrojenstein Lantman,David Wallis,Giorgio Pennacchioni,Bjørn Jamtveit
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Science advancesno. 9 (2024): eadi8533-eadi8533
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTHno. 8 (2023)
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Rellie M. Goddard,Kathryn M. Kumamoto, Louis S. Hansen,David Wallis,Andrew Cross,Christopher A. Thom
Authorea (Authorea) (2023)
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