We present details of a novel imaging algorithm based on the extended Nijboer-Zernike (ENZ) theory of diffraction. We derive integral expressions relating the electric field distribution in the entrance pupil of an optical system to the electric field in its focal region. The evaluation of these integrals is made possible by means of a highly accurate and efficient series expansion similar to those occurring in standard ENZ theory. Based on these results an ENZ imaging scheme is constructed and evaluated in detail with attention to the convergence properties and computational complexity of the new method
The computational methods for the diffraction integrals that occur in the Extended Nijboer-Zernike (...
In several optical systems, a specific Point Spread Function (PSF) needs to be generated. This can b...
The point-spread function (PSF) is used in optics for design and assessment of the imaging capabilit...
We present details of a novel imaging algorithm based on the extended Nijboer-Zernike (ENZ) theory o...
We present details of a novel imaging algorithm based on the extended Nijboer–Zernike (ENZ) theory o...
Results are presented of mask imaging using the Extended Nijboer-Zernike (ENZ) theory of diffraction...
Results are presented of mask imaging using the Extended Nijboer-Zernike (ENZ) theory of diffraction...
In this paper we introduce a new mask imaging algorithm that is based on the source point integratio...
We study the image formation by a high-numerical-aperture optical imaging system in the presence of ...
In present-day society, we encounter optical systems on a daily basis. Most people have a DVD player...
The computational methods for the diffraction integrals that occur in the Extended Nijboer-Zernike (...
In several optical systems, a specific Point Spread Function (PSF) needs to be generated. This can b...
The point-spread function (PSF) is used in optics for design and assessment of the imaging capabilit...
We present details of a novel imaging algorithm based on the extended Nijboer-Zernike (ENZ) theory o...
We present details of a novel imaging algorithm based on the extended Nijboer–Zernike (ENZ) theory o...
Results are presented of mask imaging using the Extended Nijboer-Zernike (ENZ) theory of diffraction...
Results are presented of mask imaging using the Extended Nijboer-Zernike (ENZ) theory of diffraction...
In this paper we introduce a new mask imaging algorithm that is based on the source point integratio...
We study the image formation by a high-numerical-aperture optical imaging system in the presence of ...
In present-day society, we encounter optical systems on a daily basis. Most people have a DVD player...
The computational methods for the diffraction integrals that occur in the Extended Nijboer-Zernike (...
In several optical systems, a specific Point Spread Function (PSF) needs to be generated. This can b...
The point-spread function (PSF) is used in optics for design and assessment of the imaging capabilit...