A Step Towards 6D WAXD Tensor Tomography.
IUCRJ(2024)
Beijing Synchrotron Radiation Facility
Abstract
X-ray scattering/diffraction tensor tomography techniques are promising methods to acquire the 3D texture information of heterogeneous biological tissues at micrometre resolution. However, the methods suffer from a long overall acquisition time due to multi-dimensional scanning across real and reciprocal space. Here, a new approach is introduced to obtain 3D reciprocal information of each illuminated scanning volume using mathematic modeling, which is equivalent to a physical scanning procedure for collecting the full reciprocal information required for voxel reconstruction. The virtual reciprocal scanning scheme was validated by a simulated 6D wide-angle X-ray diffraction tomography experiment. The theoretical validation of the method represents an important technological advancement for 6D diffraction tensor tomography and a crucial step towards pervasive applications in the characterization of heterogeneous materials.
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Key words
computed tomography,wide-angle X-ray diffraction,computational modeling,structure prediction,virtual reciprocal-space scans,6D tomography,diffraction tensors,voxel reconstruction
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