Calculation of the exact diffraction field of a three dimensional object from its samples taken over the entire space can be obtained by defining it as an inverse problem. For that purpose, we propose an algorithm based on L-1-norm minimization to solve the defined inverse problem. Proposed algorithm paves the way to reconstruct the original diffraction field by having less number of samples compared to the methods based on L-2-norm minimization
A deterministic variant of Bragg Coherent Diffraction Imaging is introduced in its kinematical appro...
Dynamic holographic reconstructions can be obtained by employing digital holographic video displays ...
Abstract-We discuss two techniques for solving two-dimensional (2-D) inverse scattering problems by ...
Cataloged from PDF version of article.Computation of the diffraction field from a given set of arbit...
Two important signal processing problems in the display side of a holographic 3DTV are the computati...
Computer generated holography is one of common methods to obtain three-dimensional visualization. It...
Consider the inverse diffraction problem to determine a two-dimensional periodic structure from scat...
In this paper, a fast algorithm is proposed for accurate calculation of the scalar optical diffracti...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN024044 / BLDSC - British Library D...
Calculation of the scalar diffraction field over the entire space from a given field over a surface ...
An inverse scattering approach based on the field equivalence principle is developed for reconstruct...
The problem of the determination of the values of a field on a surface from its values on a surface ...
We study diffraction and light scattering, both theoreticaly and experimentaly. We use the different...
In the inverse scattering problem, the aim is to reconstruct the unknown spatial distribution of the...
A methodology based on the multipole expansion is developed to estimate the minimum source region of...
A deterministic variant of Bragg Coherent Diffraction Imaging is introduced in its kinematical appro...
Dynamic holographic reconstructions can be obtained by employing digital holographic video displays ...
Abstract-We discuss two techniques for solving two-dimensional (2-D) inverse scattering problems by ...
Cataloged from PDF version of article.Computation of the diffraction field from a given set of arbit...
Two important signal processing problems in the display side of a holographic 3DTV are the computati...
Computer generated holography is one of common methods to obtain three-dimensional visualization. It...
Consider the inverse diffraction problem to determine a two-dimensional periodic structure from scat...
In this paper, a fast algorithm is proposed for accurate calculation of the scalar optical diffracti...
SIGLEAvailable from British Library Document Supply Centre-DSC:DXN024044 / BLDSC - British Library D...
Calculation of the scalar diffraction field over the entire space from a given field over a surface ...
An inverse scattering approach based on the field equivalence principle is developed for reconstruct...
The problem of the determination of the values of a field on a surface from its values on a surface ...
We study diffraction and light scattering, both theoreticaly and experimentaly. We use the different...
In the inverse scattering problem, the aim is to reconstruct the unknown spatial distribution of the...
A methodology based on the multipole expansion is developed to estimate the minimum source region of...
A deterministic variant of Bragg Coherent Diffraction Imaging is introduced in its kinematical appro...
Dynamic holographic reconstructions can be obtained by employing digital holographic video displays ...
Abstract-We discuss two techniques for solving two-dimensional (2-D) inverse scattering problems by ...