By expanding the hard aperture function into a finite sum of complex Gaussian functions, some approximate analytical formulae for the cross-spectral density of a partially coherent flattened Gaussian beam (FGB) propagating through apertured aligned and misaligned ABCD optical systems are derived based on the generalized Collins formula. The results obtained by using the approximate analytical formula are in good agreement with those obtained by using the numerical integral calculation. As a numerical example, the focusing properties (including average irradiance distribution and focal shift) of a partially coherent FGB focused by an apertured thin lens are studied, and it is found that the focusing properties of a partially coherent FGB are...
The phenomenon of focal shift is studied for the case of focused coherent beams showing a flat-toppe...
The propagation of electromagnetic beams through a large variety of optical systems has received muc...
In this paper, we deduce the approximate analytical formula for the distribution of axial intensity ...
Paraxial propagation of a partially coherent Hermite-Gaussian beam through aligned and misaligned AB...
The propagation of flat-topped beam passing through a paraxial optical ABCD system is extended to pa...
The propagation of flat-topped beams passing through paraxial ABCD optical system is investigated ba...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
This paper investigated the focal shift of partially coherent dark hollow Gaussian beams through a t...
Propagation of Bessel and Bessel-Gaussian beams through an unapertured or apertured misaligned parax...
The beam width and the angular spread of a partially coherent beam, and their transformation as the ...
Anomalous hollow beam is extended to the partially coherent case. Analytical propagation formulae fo...
In this paper, we propose a numerical approach to simulate the degree of coherence (DOC) of a partia...
A generalized form of spectral representation theory is developed and used with the ABCD formulation...
A generalized form of spectral representation theory is developed and used with the ABCD formulation...
Based on scalar diffraction theory, propagation properties of beam generated by Gaussian mirror reso...
The phenomenon of focal shift is studied for the case of focused coherent beams showing a flat-toppe...
The propagation of electromagnetic beams through a large variety of optical systems has received muc...
In this paper, we deduce the approximate analytical formula for the distribution of axial intensity ...
Paraxial propagation of a partially coherent Hermite-Gaussian beam through aligned and misaligned AB...
The propagation of flat-topped beam passing through a paraxial optical ABCD system is extended to pa...
The propagation of flat-topped beams passing through paraxial ABCD optical system is investigated ba...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
This paper investigated the focal shift of partially coherent dark hollow Gaussian beams through a t...
Propagation of Bessel and Bessel-Gaussian beams through an unapertured or apertured misaligned parax...
The beam width and the angular spread of a partially coherent beam, and their transformation as the ...
Anomalous hollow beam is extended to the partially coherent case. Analytical propagation formulae fo...
In this paper, we propose a numerical approach to simulate the degree of coherence (DOC) of a partia...
A generalized form of spectral representation theory is developed and used with the ABCD formulation...
A generalized form of spectral representation theory is developed and used with the ABCD formulation...
Based on scalar diffraction theory, propagation properties of beam generated by Gaussian mirror reso...
The phenomenon of focal shift is studied for the case of focused coherent beams showing a flat-toppe...
The propagation of electromagnetic beams through a large variety of optical systems has received muc...
In this paper, we deduce the approximate analytical formula for the distribution of axial intensity ...