Framework for three-dimensional coherent diffraction imaging by focused beam x-ray Bragg ptychography
S. O. Hruszkewycz, Martin V. Holt, Ash Tripathi, J. Mäser, P. H. Fuoss
Abstract
S. O. Hruszkewycz, Martin V. Holt, Ash Tripathi, J. Mäser, P. H. Fuoss
Abstract
We present the framework for convergent beam Bragg ptychography, and, using simulations, we demonstrate that nanocrystals can be ptychographically reconstructed from highly convergent x-ray Bragg diffraction. The ptychographic iterative engine is extended to three dimensions and shown to successfully reconstruct a simulated nanocrystal using overlapping raster scans with a defocused curved beam, the diameter of which matches the crystal size. This object reconstruction strategy can serve as the basis for coherent diffraction imaging experiments at coherent scanning nanoprobe x-ray sources.
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We present the framework for convergent beam Bragg ptychography, and, using simulations, we demonstrate that nanocrystals can be ptychographically reconstructed from highly convergent x-ray Bragg diffraction. The ptychographic iterative engine is extended to three dimensions and shown to successfully reconstruct a simulated nanocrystal using overlapping raster scans with a defocused curved beam, the diameter of which matches the crystal size. This object reconstruction strategy can serve as the basis for coherent diffraction imaging experiments at coherent scanning nanoprobe x-ray sources.
Key concepts: Ptychography, Coherent diffraction imaging, Optics, Diffraction, Diffraction topography, Raster scan, Bragg's law, Materials science