We introduce a new high-energy X-ray diffraction tomography technique for volumetric materials characterization. In this method, a conical shell beam is raster scanned through the samples. A central aperture optically couples the diffracted flux from the samples onto a pixelated energy-resolving detector. Snapshot measurements taken during the scan enable the construction of depth-resolved dark-field section images. The calculation of dspacing values enables the mapping of material phase in a volumetric image. We demonstrate our technique using five ~15 mm thick, axially separated samples placed within a polymer tray of the type used routinely in airport security stations. Our method has broad analytical utility due to scalability in both s...
International audiencePSICHE is a high-energy, multi-technique beamline at the SOLEIL synchrotron fa...
X-ray diffraction tomography (XDT) probes the spatially variant x-ray diffraction (XRD) profile with...
In this preliminary study we present a depth resolved transmission image sequence of an object combi...
We introduce a new high-energy X-ray diffraction tomography technique for volumetric materials chara...
We demonstrate a novel imaging architecture to collect range encoded diffraction patterns from overl...
To retrieve crystallographic information from extended sample volumes requires a high-energy probe. ...
To retrieve crystallographic information from extended sample volumes requires a high-energy probe. ...
We combine diffraction and absorption tomography by raster scanning samples through a hollow cone of...
We demonstrate depth-resolved absorption imaging by scanning an object through a conical shell of X-...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
In many applications, the main limitation of X-ray absorption methods is that the signals measured a...
We demonstrate tomography by measuring a sporadic sequence of ring shaped projections collected duri...
A new data collection strategy for performing synchrotron energy-dispersive X-ray diffraction comput...
International audiencePSICHE is a high-energy, multi-technique beamline at the SOLEIL synchrotron fa...
X-ray diffraction tomography (XDT) probes the spatially variant x-ray diffraction (XRD) profile with...
In this preliminary study we present a depth resolved transmission image sequence of an object combi...
We introduce a new high-energy X-ray diffraction tomography technique for volumetric materials chara...
We demonstrate a novel imaging architecture to collect range encoded diffraction patterns from overl...
To retrieve crystallographic information from extended sample volumes requires a high-energy probe. ...
To retrieve crystallographic information from extended sample volumes requires a high-energy probe. ...
We combine diffraction and absorption tomography by raster scanning samples through a hollow cone of...
We demonstrate depth-resolved absorption imaging by scanning an object through a conical shell of X-...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
In many applications, the main limitation of X-ray absorption methods is that the signals measured a...
We demonstrate tomography by measuring a sporadic sequence of ring shaped projections collected duri...
A new data collection strategy for performing synchrotron energy-dispersive X-ray diffraction comput...
International audiencePSICHE is a high-energy, multi-technique beamline at the SOLEIL synchrotron fa...
X-ray diffraction tomography (XDT) probes the spatially variant x-ray diffraction (XRD) profile with...
In this preliminary study we present a depth resolved transmission image sequence of an object combi...