The Kirchhoff integral for diffraction in the near-forward direction is derived from the exact solution of the electromagnetic boundary value problem of a focused Gaussian laser beam incident on a spherical particle. The diffracted intensity in the vicinity of the particle is computed and the way in which the features of the diffraction pattern depend on the width of the Gaussian beam is commented on
Abstract: The paper deals with scalar diffraction theory and introduces an important solution of wav...
Hertz vector diffraction theory is applied to a focused TEM00 Gaussian light field passing through a...
The paper presents a simple and effective method to calculate polarization and diffraction of the Ga...
The Kirchhoff integral for diffraction in the near-forward direction is derived from the exact solut...
We derive a straightforward theoretical method to determine the electromagnetic fields for the incid...
Using the electromagnetic equivalent of the Kirchhoff diffraction integral, we investigate the effec...
In the diffraction pattern produced by a half-plane sharp edge when it obstructs the passage of a la...
An exact decomposition of the diffracted field into a direct wave and a boundary diffraction wave is...
Theoretical and experimental aspects of the diffraction of gaussian laser beams by the straight edge...
Bessel beam can overcome the limitation of the Rayleigh range of Gaussian beam with the same spot si...
The vector wave equation for electromagnetic waves, when subject to a number of constraints correspo...
In the diffraction pattern produced by a half-plane sharp edge when it obstructs the passage of a la...
A “genuinely” paraxial version of Miyamoto-Wolf's theory aimed at dealing with sharp-edge diffractio...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
PART I. Closed form solutions have been derived for the focal plane diffraction patterns of (a) a c...
Abstract: The paper deals with scalar diffraction theory and introduces an important solution of wav...
Hertz vector diffraction theory is applied to a focused TEM00 Gaussian light field passing through a...
The paper presents a simple and effective method to calculate polarization and diffraction of the Ga...
The Kirchhoff integral for diffraction in the near-forward direction is derived from the exact solut...
We derive a straightforward theoretical method to determine the electromagnetic fields for the incid...
Using the electromagnetic equivalent of the Kirchhoff diffraction integral, we investigate the effec...
In the diffraction pattern produced by a half-plane sharp edge when it obstructs the passage of a la...
An exact decomposition of the diffracted field into a direct wave and a boundary diffraction wave is...
Theoretical and experimental aspects of the diffraction of gaussian laser beams by the straight edge...
Bessel beam can overcome the limitation of the Rayleigh range of Gaussian beam with the same spot si...
The vector wave equation for electromagnetic waves, when subject to a number of constraints correspo...
In the diffraction pattern produced by a half-plane sharp edge when it obstructs the passage of a la...
A “genuinely” paraxial version of Miyamoto-Wolf's theory aimed at dealing with sharp-edge diffractio...
Based on the scalar diffraction theory, the propagation and focusing properties of a hard-edged diff...
PART I. Closed form solutions have been derived for the focal plane diffraction patterns of (a) a c...
Abstract: The paper deals with scalar diffraction theory and introduces an important solution of wav...
Hertz vector diffraction theory is applied to a focused TEM00 Gaussian light field passing through a...
The paper presents a simple and effective method to calculate polarization and diffraction of the Ga...