Generalized Fourier Diffraction Theorem and Filtered Backpropagation for Tomographic Reconstruction

Fuente: arXiv
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Main Authors: Kirisits, Clemens, Quellmalz, Michael, Setterqvist, Eric
Format: Preprint
Published: 2024
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author Kirisits, Clemens
Quellmalz, Michael
Setterqvist, Eric
author_facet Kirisits, Clemens
Quellmalz, Michael
Setterqvist, Eric
contents This paper concerns diffraction-tomographic reconstruction of an object characterized by its scattering potential. We establish a rigorous generalization of the Fourier diffraction theorem in arbitrary dimension, giving a precise relation in the Fourier domain between measurements of the scattered wave and reconstructions of the scattering potential. With this theorem at hand, Fourier coverages for different experimental setups are investigated taking into account parameters such as object orientation, direction of incidence and frequency of illumination. Allowing for simultaneous and discontinuous variation of these parameters, a general filtered backpropagation formula is derived resulting in an explicit approximation of the scattering potential for a large class of experimental setups.
format Preprint
id arxiv_https___arxiv_org_abs_2407_01793
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Generalized Fourier Diffraction Theorem and Filtered Backpropagation for Tomographic Reconstruction
Kirisits, Clemens
Quellmalz, Michael
Setterqvist, Eric
Numerical Analysis
Functional Analysis
This paper concerns diffraction-tomographic reconstruction of an object characterized by its scattering potential. We establish a rigorous generalization of the Fourier diffraction theorem in arbitrary dimension, giving a precise relation in the Fourier domain between measurements of the scattered wave and reconstructions of the scattering potential. With this theorem at hand, Fourier coverages for different experimental setups are investigated taking into account parameters such as object orientation, direction of incidence and frequency of illumination. Allowing for simultaneous and discontinuous variation of these parameters, a general filtered backpropagation formula is derived resulting in an explicit approximation of the scattering potential for a large class of experimental setups.
title Generalized Fourier Diffraction Theorem and Filtered Backpropagation for Tomographic Reconstruction
topic Numerical Analysis
Functional Analysis
url https://arxiv.org/abs/2407.01793