A new hybrid method for the analysis of diffractive optical elements, which combines fully vectorial and scalar theories, is presented. It is suitable for use with elements of arbitrary large zone, even when the local feature size is of the order of the wavelength. To assess its applicability, we have performed cross-checking tests. The model is shown to accurately predict many optical properties of diffractive optical elements based on two-dimensional artificial dielectrics, like the useful energy diffracted into the order of interest or the deterministic loss into high diffraction orders for an illumination with a wavelength different from the design wavelength or for highly oblique incidence. © 2007 Optical Society of America OCIS codes:...
This contribution presents results obtained in the field of diffractive optics, covering practically...
Technological advances made possible micro-processing of optical and diffractive devices of sub-wave...
peer reviewedThe performance (paraxial phase delay) of conventional diffractive optical elements is ...
We present what is to our knowledge a new type of diffractive optical element (DOE), the computer-ge...
Passive optical components can be broken down into two main groups: Refractive elements and diffract...
This thesis mainly treats the fabrication, replication and applications of diffractive optical eleme...
The range of validity and the accuracy of scalar diffraction theory for periodic diffractive phase e...
Three numerical methods for calculating the point spread function for holographic optical elements i...
Although hybrid ( i.e. refractive-diffractive) surfaces are in common use in optical design there ar...
-We report on simulations and measurements of focusing diffractive optical elements, fabricated as t...
An analytical approach based on the scalar diffraction theory is presented for design of blazed diff...
The theoretical bases, numerical methods and automation aids for investigation of the diffraction op...
This diploma project is focused on use the fractals in diffractive optical elements. Properties of d...
Artificial index gratings, which are composed of binary microstructures of sizes less than the incid...
In this paper, scalar limitations of diffractive optic components are investigated using coupled wav...
This contribution presents results obtained in the field of diffractive optics, covering practically...
Technological advances made possible micro-processing of optical and diffractive devices of sub-wave...
peer reviewedThe performance (paraxial phase delay) of conventional diffractive optical elements is ...
We present what is to our knowledge a new type of diffractive optical element (DOE), the computer-ge...
Passive optical components can be broken down into two main groups: Refractive elements and diffract...
This thesis mainly treats the fabrication, replication and applications of diffractive optical eleme...
The range of validity and the accuracy of scalar diffraction theory for periodic diffractive phase e...
Three numerical methods for calculating the point spread function for holographic optical elements i...
Although hybrid ( i.e. refractive-diffractive) surfaces are in common use in optical design there ar...
-We report on simulations and measurements of focusing diffractive optical elements, fabricated as t...
An analytical approach based on the scalar diffraction theory is presented for design of blazed diff...
The theoretical bases, numerical methods and automation aids for investigation of the diffraction op...
This diploma project is focused on use the fractals in diffractive optical elements. Properties of d...
Artificial index gratings, which are composed of binary microstructures of sizes less than the incid...
In this paper, scalar limitations of diffractive optic components are investigated using coupled wav...
This contribution presents results obtained in the field of diffractive optics, covering practically...
Technological advances made possible micro-processing of optical and diffractive devices of sub-wave...
peer reviewedThe performance (paraxial phase delay) of conventional diffractive optical elements is ...