X-ray Interferometry Using a Modulated Phase Grating: Theory and Experiments

Fuente: arXiv
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Main Authors: Meyer, Hunter, Dey, Joyoni, Carr, Sydney, Ham, Kyungmin, Butler, Leslie G., Dooley, Kerry M., Hidrovo, Ivan, Bleuel, Markus, Varga, Tamas, Schulz, Joachim, Beckenbach, Thomas, Kaiser, Konradin
Format: Preprint
Published: 2024
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author Meyer, Hunter
Dey, Joyoni
Carr, Sydney
Ham, Kyungmin
Butler, Leslie G.
Dooley, Kerry M.
Hidrovo, Ivan
Bleuel, Markus
Varga, Tamas
Schulz, Joachim
Beckenbach, Thomas
Kaiser, Konradin
author_facet Meyer, Hunter
Dey, Joyoni
Carr, Sydney
Ham, Kyungmin
Butler, Leslie G.
Dooley, Kerry M.
Hidrovo, Ivan
Bleuel, Markus
Varga, Tamas
Schulz, Joachim
Beckenbach, Thomas
Kaiser, Konradin
contents X-ray grating interferometry allows for the simultaneous acquisition of attenuation, differential-phase contrast, and dark-field images, resulting from X-ray attenuation, refraction, and small-angle scattering, respectively. The modulated phase grating (MPG) interferometer is a recently developed grating interferometry system capable of generating a directly resolvable interference pattern using a relatively large period grating envelope function that is sampled at a pitch that allows for X-ray spatial coherence using a microfocus X-ray source or by use of a source G0 grating that follows the Lau condition. We present the theory of the MPG interferometry system for a 2-dimensional staggered grating, derived using Fourier optics, and we compare the theoretical predictions with experiments we have performed with a microfocus X-ray system at Pennington Biomedical Research Center, LSU. The theoretical and experimental fringe visibility is evaluated as a function of grating-to-detector distance. Quantitative experiments are performed with porous carbon and alumina samples, and qualitative analysis of attenuation and dark-field images of a dried anchovy are shown.
format Preprint
id arxiv_https___arxiv_org_abs_2404_14584
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle X-ray Interferometry Using a Modulated Phase Grating: Theory and Experiments
Meyer, Hunter
Dey, Joyoni
Carr, Sydney
Ham, Kyungmin
Butler, Leslie G.
Dooley, Kerry M.
Hidrovo, Ivan
Bleuel, Markus
Varga, Tamas
Schulz, Joachim
Beckenbach, Thomas
Kaiser, Konradin
Optics
Instrumentation and Detectors
Medical Physics
X-ray grating interferometry allows for the simultaneous acquisition of attenuation, differential-phase contrast, and dark-field images, resulting from X-ray attenuation, refraction, and small-angle scattering, respectively. The modulated phase grating (MPG) interferometer is a recently developed grating interferometry system capable of generating a directly resolvable interference pattern using a relatively large period grating envelope function that is sampled at a pitch that allows for X-ray spatial coherence using a microfocus X-ray source or by use of a source G0 grating that follows the Lau condition. We present the theory of the MPG interferometry system for a 2-dimensional staggered grating, derived using Fourier optics, and we compare the theoretical predictions with experiments we have performed with a microfocus X-ray system at Pennington Biomedical Research Center, LSU. The theoretical and experimental fringe visibility is evaluated as a function of grating-to-detector distance. Quantitative experiments are performed with porous carbon and alumina samples, and qualitative analysis of attenuation and dark-field images of a dried anchovy are shown.
title X-ray Interferometry Using a Modulated Phase Grating: Theory and Experiments
topic Optics
Instrumentation and Detectors
Medical Physics
url https://arxiv.org/abs/2404.14584