Based on scalar diffraction theory, propagation properties of beam generated by Gaussian mirror resonator were investigated. Explicit expressions for the field distribution of the beam that propagate through a paraxial optical ABCD system were derived and numerical examples were given to illustrate our analytical results. (c) 2005 Elsevier B.V. All rights reserved
By expanding the hard aperture function into a finite sum of complex Gaussian functions, some approx...
We investigate the linear propagation of Gaussian-apodized solutions to the paraxial wave equation i...
A physical model for guiding the wave in photorefractive media is studied. Propagation of cos-Gaussi...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
Based on scalar diffraction theory, we investigated far-field intensity distribution (FFID) of beam ...
We study the propagation of generalized Bessel-Gauss beams through ABCD optical systems, starting fr...
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...
The propagation of flat-topped beams passing through paraxial ABCD optical system is investigated ba...
Paraxial propagation of a partially coherent Hermite-Gaussian beam through aligned and misaligned AB...
Propagation of Bessel and Bessel-Gaussian beams through an unapertured or apertured misaligned parax...
Geometric relations are used to study the propagation environment of a Gaussian beam wave propagatin...
The propagation of flat-topped beam passing through a paraxial optical ABCD system is extended to pa...
Geometric relations are used to study the propagation environment of a Gaussian beam wave propagatin...
Based on the generalized Huygens-Fresnel diffraction integral and the expansion of the hard aperture...
By expanding the hard aperture function into a finite sum of complex Gaussian functions, some approx...
We investigate the linear propagation of Gaussian-apodized solutions to the paraxial wave equation i...
A physical model for guiding the wave in photorefractive media is studied. Propagation of cos-Gaussi...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
Based on scalar diffraction theory, we investigated far-field intensity distribution (FFID) of beam ...
We study the propagation of generalized Bessel-Gauss beams through ABCD optical systems, starting fr...
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...
The propagation of flat-topped beams passing through paraxial ABCD optical system is investigated ba...
Paraxial propagation of a partially coherent Hermite-Gaussian beam through aligned and misaligned AB...
Propagation of Bessel and Bessel-Gaussian beams through an unapertured or apertured misaligned parax...
Geometric relations are used to study the propagation environment of a Gaussian beam wave propagatin...
The propagation of flat-topped beam passing through a paraxial optical ABCD system is extended to pa...
Geometric relations are used to study the propagation environment of a Gaussian beam wave propagatin...
Based on the generalized Huygens-Fresnel diffraction integral and the expansion of the hard aperture...
By expanding the hard aperture function into a finite sum of complex Gaussian functions, some approx...
We investigate the linear propagation of Gaussian-apodized solutions to the paraxial wave equation i...
A physical model for guiding the wave in photorefractive media is studied. Propagation of cos-Gaussi...