AbstractWe study the influence of the curvature of a circular cylindrical grating on the diffraction of a TE or TM polarized electromagnetic plane wave. For every ratio of the wave length λ to the periodd, we prove the local approximation in the planar field by a plane infinite grating, when the radiusRof the circular grating goes to infinity. The error estimates are optimal and of orderO(d/R) outside some transition regions corresponding to a tangent Bragg's mode or to transition between the region of direct illumination and the region of shadow, where the error is likeO(d/(λ2/3R1/3)). In each region, we calculate the first corrector, solution of an infinite plane grating diffraction problem
This paper studies the dependence of solutions to conical diffraction problems upon geometric parame...
This thesis examines certain aspects of diffraction and scattering of high frequency waves, utilisin...
This thesis examines certain aspects of diffraction and scattering of high frequency waves, utilisin...
AbstractWe study the influence of the curvature of a circular cylindrical grating on the diffraction...
—The possibility is demonstrated to obtain the diffraction pattern at infinity in the Fraunhofer zon...
Diffraction of plane waves by infinite gratings is a classical research topic in the scattering theo...
AbstractIn this paper we construct geometric-optics solutions to an acoustic scattering problem by a...
Two types of surface-relief gratings are considered in this thesis. They are the rectangular-groove ...
The differential method (also called the C method) is applied to the diffraction of linearly polariz...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
—The possibility is demonstrated to obtain the diffraction pattern at infinity in the Fraunhofer zon...
Closed-form solutions have been derived for the diffraction patterns at the focal plane of (1) a con...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/113718/1/sapm1966451383.pd
Abstract: "We have recently introduced a method of variation of boundaries for the solution of diffr...
This paper studies the dependence of solutions to conical diffraction problems upon geometric parame...
This thesis examines certain aspects of diffraction and scattering of high frequency waves, utilisin...
This thesis examines certain aspects of diffraction and scattering of high frequency waves, utilisin...
AbstractWe study the influence of the curvature of a circular cylindrical grating on the diffraction...
—The possibility is demonstrated to obtain the diffraction pattern at infinity in the Fraunhofer zon...
Diffraction of plane waves by infinite gratings is a classical research topic in the scattering theo...
AbstractIn this paper we construct geometric-optics solutions to an acoustic scattering problem by a...
Two types of surface-relief gratings are considered in this thesis. They are the rectangular-groove ...
The differential method (also called the C method) is applied to the diffraction of linearly polariz...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
—The possibility is demonstrated to obtain the diffraction pattern at infinity in the Fraunhofer zon...
Closed-form solutions have been derived for the diffraction patterns at the focal plane of (1) a con...
The diffraction of a plane electromagnetic wave by an infinitely long, perfectly conducting cylinder...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/113718/1/sapm1966451383.pd
Abstract: "We have recently introduced a method of variation of boundaries for the solution of diffr...
This paper studies the dependence of solutions to conical diffraction problems upon geometric parame...
This thesis examines certain aspects of diffraction and scattering of high frequency waves, utilisin...
This thesis examines certain aspects of diffraction and scattering of high frequency waves, utilisin...