Based on scalar diffraction theory, we investigated far-field intensity distribution (FFID) of beam generated by Gaussian mirror resonator. We found usable analytical expressions of diffracted field with respect to variation of diffraction parameters. Particular attention was paid to the parameters such as mirror spot size and radius of the Gaussian mirror, which determine the FFID. All analyses were limited to TEM00 fundamental mode. (c) 2004 Elsevier B.V. All rights reserved
Based on the vector angular spectrum method and the stationary phase method and the fact that a circ...
We present a local Gaussian beam decomposition method for calculating the scalar diffraction field d...
Hertz vector diffraction theory is applied to a focused TEM00 Gaussian light field passing through a...
Based on scalar diffraction theory, propagation properties of beam generated by Gaussian mirror reso...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
It was carried out the study, calculation and analysis of the drifraccion patterns that occur when a...
peer reviewedLASER beams used in holography have a Gaussian distribution. As a result, the interfere...
By means of the Huygens-Fresnel diffraction integral, the field representation of a laser beam modul...
Abstract: The paper deals with scalar diffraction theory and introduces an important solution of wav...
Bessel beam can overcome the limitation of the Rayleigh range of Gaussian beam with the same spot si...
We report through of computer simulations and experimental measurements that the dark spots number i...
We present an approximate technique, based on the principles of multimode Gaussian optics and pertur...
20 pages, 1 figureThe first part of the paper is devoted to diffraction phenomena that can be expres...
The phase shift induced on a Gaussian beam interacting with a nonlinear medium determines the far fi...
A detailed model of diffraction of Gaussian beams on plane uniform volume Bragg gratings based on a ...
Based on the vector angular spectrum method and the stationary phase method and the fact that a circ...
We present a local Gaussian beam decomposition method for calculating the scalar diffraction field d...
Hertz vector diffraction theory is applied to a focused TEM00 Gaussian light field passing through a...
Based on scalar diffraction theory, propagation properties of beam generated by Gaussian mirror reso...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
It was carried out the study, calculation and analysis of the drifraccion patterns that occur when a...
peer reviewedLASER beams used in holography have a Gaussian distribution. As a result, the interfere...
By means of the Huygens-Fresnel diffraction integral, the field representation of a laser beam modul...
Abstract: The paper deals with scalar diffraction theory and introduces an important solution of wav...
Bessel beam can overcome the limitation of the Rayleigh range of Gaussian beam with the same spot si...
We report through of computer simulations and experimental measurements that the dark spots number i...
We present an approximate technique, based on the principles of multimode Gaussian optics and pertur...
20 pages, 1 figureThe first part of the paper is devoted to diffraction phenomena that can be expres...
The phase shift induced on a Gaussian beam interacting with a nonlinear medium determines the far fi...
A detailed model of diffraction of Gaussian beams on plane uniform volume Bragg gratings based on a ...
Based on the vector angular spectrum method and the stationary phase method and the fact that a circ...
We present a local Gaussian beam decomposition method for calculating the scalar diffraction field d...
Hertz vector diffraction theory is applied to a focused TEM00 Gaussian light field passing through a...