This paper presents a new methodology for the solution of problems of two- and three-dimensional acoustic scattering (and, in particular, two-dimensional electromagnetic scattering) by obstacles and defects in the presence of an arbitrary number of penetrable layers. Relying on the use of certain slow-rise windowing functions, the proposed windowed Green function approach efficiently evaluates oscillatory integrals over unbounded domains, with high accuracy, without recourse to the highly expensive Sommerfeld integrals that have typically been used to account for the effect of underlying planar multilayer structures. The proposed methodology, whose theoretical basis was presented in the recent contribution (Bruno et al. 2016 SIAM J. Appl. M...
International audienceThis paper presents a class of boundary integral equation methods for...
International audienceThis paper presents a class of boundary integral equation methods for...
We introduce a new second-kind integral equation method to solve direct rough surface scattering pro...
This paper presents a new methodology for the solution of problems of two- and three-dimensional aco...
This paper introduces a new windowed Green function (WGF) method for the numerical integral-equation...
This paper introduces a new windowed Green function (WGF) method for the numerical integral-equation...
This thesis concerns development of efficient high-order boundary integral equation methods for the ...
This paper presents a windowed Green function (WGF) method for the numerical solution of problems of...
This paper presents a second-kind surface integral equation method for the numerical solution of fre...
This paper presents an efficient technique for evaluating Green’s functions associated to layered me...
This paper presents an efficient technique for eval- uating Green's functions associated to layered...
This paper presents an efficient technique for evaluating Green’s functions associated to layered m...
Using the path-integral technique, an analytical expression of the three-dimensional Green's functio...
Using the path-integral technique, an analytical expression of the three-dimensional Green's functio...
Grating scattering is a fundamental model in remote sensing, electromagnetics, ocean acoustics, nond...
International audienceThis paper presents a class of boundary integral equation methods for...
International audienceThis paper presents a class of boundary integral equation methods for...
We introduce a new second-kind integral equation method to solve direct rough surface scattering pro...
This paper presents a new methodology for the solution of problems of two- and three-dimensional aco...
This paper introduces a new windowed Green function (WGF) method for the numerical integral-equation...
This paper introduces a new windowed Green function (WGF) method for the numerical integral-equation...
This thesis concerns development of efficient high-order boundary integral equation methods for the ...
This paper presents a windowed Green function (WGF) method for the numerical solution of problems of...
This paper presents a second-kind surface integral equation method for the numerical solution of fre...
This paper presents an efficient technique for evaluating Green’s functions associated to layered me...
This paper presents an efficient technique for eval- uating Green's functions associated to layered...
This paper presents an efficient technique for evaluating Green’s functions associated to layered m...
Using the path-integral technique, an analytical expression of the three-dimensional Green's functio...
Using the path-integral technique, an analytical expression of the three-dimensional Green's functio...
Grating scattering is a fundamental model in remote sensing, electromagnetics, ocean acoustics, nond...
International audienceThis paper presents a class of boundary integral equation methods for...
International audienceThis paper presents a class of boundary integral equation methods for...
We introduce a new second-kind integral equation method to solve direct rough surface scattering pro...