The microstructure of a sub-micrometric gold crystal during nanoindentation is visualized by in situ multi-wavelength Bragg coherent X-ray diffraction imaging. The gold crystal is indented using a custom-built atomic force microscope. A band of deformation attributed to a shear band oriented along the (221) lattice plane is nucleated at the lower left corner of the crystal and propagates towards the crystal center with increasing applied mechanical load. After complete unloading, an almost strain-free and defect-free crystal is left behind, demonstrating a pseudo-elastic behavior that can only be studied by in situ imaging while it is invisible to ex situ examinations. The recovery is probably associated with reversible dislocations nucleat...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
International audienceThis article reports on energy-dispersive micro Laue (mLaue) diffraction of an...
We have used the Interracial Force Microscope" to perform nanoindentations on Au single- crystal sur...
International audienceThe microstructure of a sub-micrometric gold crystal during nanoindentation is...
International audienceStructural quality and stability of nanocrystals are fundamental problems that...
The atomic force microscope (AFM) can be used to measure mechanical properties of nanoscale objects,...
International audienceCoherent x-ray micro-diffraction and local mechanical loading can be combined ...
Understanding and characterizing the mechanical response of individual nanostructure is of great imp...
The properties of crystalline materials are dictated by their lattice structure. The periodic arrang...
Topological defects are ubiquitous in physics and include crystallographic imperfections such as def...
Focussed Ion Beam (FIB) milling is a mainstay of nano-scale machining. By manipulating a tightly foc...
C1 - Journal Articles RefereedCoherent X-ray diffraction imaging is a rapidly advancing form of micr...
International audienceWe report on systematic single defect free Au nanowires grown by physical vap...
Using ex-situ transmission electron microscopy and the recently developed nanoprobe diffraction (NPD...
Gold nanocrystals are increasingly important for a wide range of potential applications in photonics...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
International audienceThis article reports on energy-dispersive micro Laue (mLaue) diffraction of an...
We have used the Interracial Force Microscope" to perform nanoindentations on Au single- crystal sur...
International audienceThe microstructure of a sub-micrometric gold crystal during nanoindentation is...
International audienceStructural quality and stability of nanocrystals are fundamental problems that...
The atomic force microscope (AFM) can be used to measure mechanical properties of nanoscale objects,...
International audienceCoherent x-ray micro-diffraction and local mechanical loading can be combined ...
Understanding and characterizing the mechanical response of individual nanostructure is of great imp...
The properties of crystalline materials are dictated by their lattice structure. The periodic arrang...
Topological defects are ubiquitous in physics and include crystallographic imperfections such as def...
Focussed Ion Beam (FIB) milling is a mainstay of nano-scale machining. By manipulating a tightly foc...
C1 - Journal Articles RefereedCoherent X-ray diffraction imaging is a rapidly advancing form of micr...
International audienceWe report on systematic single defect free Au nanowires grown by physical vap...
Using ex-situ transmission electron microscopy and the recently developed nanoprobe diffraction (NPD...
Gold nanocrystals are increasingly important for a wide range of potential applications in photonics...
This study presents a detailed examination of the lattice distortions introduced by glancing inciden...
International audienceThis article reports on energy-dispersive micro Laue (mLaue) diffraction of an...
We have used the Interracial Force Microscope" to perform nanoindentations on Au single- crystal sur...