Atomic level defects such as dislocations play key roles in determining the macroscopic properties of crystalline materials. Their effects range from increased chemical reactivity to enhanced mechanical properties. Dislocations have been widely studied using traditional techniques such as X-ray diffraction (XRD) and optical imaging. Recent advances have enabled atomic force microscopy (AFM) to study single dislocations in 2D, while transmission electron microscopy (TEM) can now visualize strain fields in 3D with near atomic resolution. However, these techniques cannot offer 3D imaging of the formation or movement of dislocations during dynamic processes. Here, we describe how Bragg Coherent Diffraction Imaging (BCDI) can be used to visuali...
We introduce the Bragg coherent x-ray diffraction imaging (Bragg-CDI) and report its improvement to ...
Results of Bragg coherent diffraction imaging (BCDI) confirm that ion migration and consumption occu...
International audienceCoherent x-ray microscopy by phase retrieval of Bragg diffraction intensities ...
Atomic level defects such as dislocations play key roles in determining the macroscopic properties o...
Most of our knowledge of dislocation mediated stress relaxation during epitaxial crystal growth come...
The properties of crystalline materials are dictated by their lattice structure. The periodic arrang...
International audienceStructural quality and stability of nanocrystals are fundamental problems that...
Most of our knowledge of dislocation-mediated stress relaxation during epitaxial crystal growth come...
Lattice defects play a key role in determining the properties of crystalline materials. Probing the ...
Abstract Coherent diffraction imaging enables the imaging of individual defects, such as dislocation...
This work was supported by an FP7 advanced grant from the European Research Council (JNC and IKR), b...
The aim of this work is using Bragg coherent X-ray diffraction imaging (BCDI) to study the calcite c...
National audienceImaging complex crystalline materials at the nanoscale is a major challenge of nano...
Crystal‐plastic deformation is one of the main mechanisms that can accommodate large amounts of stra...
With their potential to offer new properties, single crystals containing nanoparticles provide an at...
We introduce the Bragg coherent x-ray diffraction imaging (Bragg-CDI) and report its improvement to ...
Results of Bragg coherent diffraction imaging (BCDI) confirm that ion migration and consumption occu...
International audienceCoherent x-ray microscopy by phase retrieval of Bragg diffraction intensities ...
Atomic level defects such as dislocations play key roles in determining the macroscopic properties o...
Most of our knowledge of dislocation mediated stress relaxation during epitaxial crystal growth come...
The properties of crystalline materials are dictated by their lattice structure. The periodic arrang...
International audienceStructural quality and stability of nanocrystals are fundamental problems that...
Most of our knowledge of dislocation-mediated stress relaxation during epitaxial crystal growth come...
Lattice defects play a key role in determining the properties of crystalline materials. Probing the ...
Abstract Coherent diffraction imaging enables the imaging of individual defects, such as dislocation...
This work was supported by an FP7 advanced grant from the European Research Council (JNC and IKR), b...
The aim of this work is using Bragg coherent X-ray diffraction imaging (BCDI) to study the calcite c...
National audienceImaging complex crystalline materials at the nanoscale is a major challenge of nano...
Crystal‐plastic deformation is one of the main mechanisms that can accommodate large amounts of stra...
With their potential to offer new properties, single crystals containing nanoparticles provide an at...
We introduce the Bragg coherent x-ray diffraction imaging (Bragg-CDI) and report its improvement to ...
Results of Bragg coherent diffraction imaging (BCDI) confirm that ion migration and consumption occu...
International audienceCoherent x-ray microscopy by phase retrieval of Bragg diffraction intensities ...