A new method for the numerical solution of volume integral equations is proposed and applied to a Lippmann--Schwinger type equation in diffraction theory. The approximate solution is represented as a linear combination of the scaled and shifted Gaussian. We prove spectral convergence of the method up to some negligible saturation error. The theoretical results are confirmed by a numerical experiment
A Wiener–Hopf equation in L2 being equivalent [5] to a boundary value problem (of the first kind) fo...
International audienceVolume integral equations have been used as a theoretical tool in scattering t...
The results of a preliminary investigation into the feasibility of obtaining approximate numerical s...
ABSTRACT. A new method for the numerical solution of volume integral equations is proposed and appli...
We propose a fast and economical computational method for solving scattering Lippmann-Schwinger inte...
Recently there has been a growing interest in computational methods for quantum scattering equations...
The construction of effective calculation methods for the solution of hypersingular integral equatio...
A method for determining the diffracted or scattered components due to the interaction of a wave wit...
An external boundary-value problem with the equation of Helmholz is investigated in the paper aiming...
The wave equation for acoustic media with variable density and velocity can be transformed into an i...
Abstract. The Lippmann-Schwinger equation is an integral equation formulation for acoustic and elect...
This paper is concerned with the scattering of acoustic and electromagnetic time harmonic plane wave...
In classical Physics, the Lippmann-Schwinger equation links the field scattered by an ensemble of pa...
AbstractDue to its relatively low computational cost, the equivalent inclusion method is an attracti...
Complex Kohn variational principle is applied to the numerical solution of the fully off-shell Lippm...
A Wiener–Hopf equation in L2 being equivalent [5] to a boundary value problem (of the first kind) fo...
International audienceVolume integral equations have been used as a theoretical tool in scattering t...
The results of a preliminary investigation into the feasibility of obtaining approximate numerical s...
ABSTRACT. A new method for the numerical solution of volume integral equations is proposed and appli...
We propose a fast and economical computational method for solving scattering Lippmann-Schwinger inte...
Recently there has been a growing interest in computational methods for quantum scattering equations...
The construction of effective calculation methods for the solution of hypersingular integral equatio...
A method for determining the diffracted or scattered components due to the interaction of a wave wit...
An external boundary-value problem with the equation of Helmholz is investigated in the paper aiming...
The wave equation for acoustic media with variable density and velocity can be transformed into an i...
Abstract. The Lippmann-Schwinger equation is an integral equation formulation for acoustic and elect...
This paper is concerned with the scattering of acoustic and electromagnetic time harmonic plane wave...
In classical Physics, the Lippmann-Schwinger equation links the field scattered by an ensemble of pa...
AbstractDue to its relatively low computational cost, the equivalent inclusion method is an attracti...
Complex Kohn variational principle is applied to the numerical solution of the fully off-shell Lippm...
A Wiener–Hopf equation in L2 being equivalent [5] to a boundary value problem (of the first kind) fo...
International audienceVolume integral equations have been used as a theoretical tool in scattering t...
The results of a preliminary investigation into the feasibility of obtaining approximate numerical s...