X-ray phase imaging with a grating interferometer
Timm Weitkamp, Ana Díaz, Christian Dávid, Franz Pfeiffer, Marco Stampanoni, Peter Cloetens, Eric Ziegler
Abstract
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Timm Weitkamp, Ana Díaz, Christian Dávid, Franz Pfeiffer, Marco Stampanoni, Peter Cloetens, Eric Ziegler
Abstract
Open-access reader
Using a high-efficiency grating interferometer for hard X rays (10-30 keV) and a phase-stepping technique, separate radiographs of the phase and absorption profiles of bulk samples can be obtained from a single set of measurements. Tomographic reconstruction yields quantitative three-dimensional maps of the X-ray refractive index, with a spatial resolution down to a few microns. The method is mechanically robust, requires little spatial coherence and monochromaticity, and can be scaled up to large fields of view, with a detector of correspondingly moderate spatial resolution. These are important prerequisites for use with laboratory X-ray sources.
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Using a high-efficiency grating interferometer for hard X rays (10-30 keV) and a phase-stepping technique, separate radiographs of the phase and absorption profiles of bulk samples can be obtained from a single set of measurements. Tomographic reconstruction yields quantitative three-dimensional maps of the X-ray refractive index, with a spatial resolution down to a few microns. The method is mechanically robust, requires little spatial coherence and monochromaticity, and can be scaled up to large fields of view, with a detector of correspondingly moderate spatial resolution. These are important prerequisites for use with laboratory X-ray sources.
Key concepts: Optics, Interferometry, Grating, Refractive index, Phase-contrast imaging, Image resolution, Coherence (philosophical gambling strategy), Phase (matter)