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Scattering of timeharmonic electromagnetic waves by anisotropic inhomogeneous scatterers or impenetrable obstacles
 SIAM J. Numer. Anal
"... Abstract. We investigate an overlapping solution technique to compute the scattering of timeharmonic electromagnetic waves in two dimensions. The technique can be used to compute waves scattered by penetrable anisotropic inhomogeneous scatterers or impenetrable obstacles. The major focus is on impl ..."
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Abstract. We investigate an overlapping solution technique to compute the scattering of timeharmonic electromagnetic waves in two dimensions. The technique can be used to compute waves scattered by penetrable anisotropic inhomogeneous scatterers or impenetrable obstacles. The major focus
TE and TM beam decomposition of timeharmonic electromagnetic waves
, 2010
"... The present contribution is concerned with applying beamtype expansion to planar aperture timeharmonic electromagnetic field distribution in which the propagating elements, the electromagnetic beamtype wave objects, are decomposed into transverse electric (TE) and transverse magnetic (TM) field ..."
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The present contribution is concerned with applying beamtype expansion to planar aperture timeharmonic electromagnetic field distribution in which the propagating elements, the electromagnetic beamtype wave objects, are decomposed into transverse electric (TE) and transverse magnetic (TM) field
unknown title
, 2005
"... Some recent applications of substructuring and domain decomposition techniques to radiation and scattering of timeharmonic electromagnetic waves ..."
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Some recent applications of substructuring and domain decomposition techniques to radiation and scattering of timeharmonic electromagnetic waves
Inverse Acoustic and Electromagnetic Scattering Theory, Second Edition
, 1998
"... Abstract. This paper is a survey of the inverse scattering problem for timeharmonic acoustic and electromagnetic waves at fixed frequency. We begin by a discussion of “weak scattering ” and Newtontype methods for solving the inverse scattering problem for acoustic waves, including a brief discussi ..."
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Cited by 1072 (45 self)
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Abstract. This paper is a survey of the inverse scattering problem for timeharmonic acoustic and electromagnetic waves at fixed frequency. We begin by a discussion of “weak scattering ” and Newtontype methods for solving the inverse scattering problem for acoustic waves, including a brief
Faculté de Mathématiques,
, 2007
"... Asymptotic analysis of the scattering of a timeharmonic electromagnetic wave by a perfecly conducting metal coated with a thin dielectric shell (Dedicated to the memory of A. Ziani) ..."
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Asymptotic analysis of the scattering of a timeharmonic electromagnetic wave by a perfecly conducting metal coated with a thin dielectric shell (Dedicated to the memory of A. Ziani)
Impedance Boundary Conditions for the Scattering of TimeHarmonic Waves by Rapidly Varying Surfaces
"... A method to build impedance boundary conditions incorporating the effect of rapid variations of a perfectly conducting surface on the scattering of a scalar, Epolarized, timeharmonic electromagnetic wave is presented. The amplitude and the extent of the variations are assumed to be comparable to e ..."
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Cited by 4 (0 self)
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A method to build impedance boundary conditions incorporating the effect of rapid variations of a perfectly conducting surface on the scattering of a scalar, Epolarized, timeharmonic electromagnetic wave is presented. The amplitude and the extent of the variations are assumed to be comparable
Domain Decomposition and Additive Schwarz Techniques in the Solution of a TE Model of the Scattering by an Electrically Deep Cavity
"... Summary. Two techniques are coupled to solve a model problem relative to the scattering of a 2D timeharmonic electromagnetic wave by an obstacle including an electrically deep cavity. Both of them are based on a boundary element method. The first technique uses a domain decomposition procedure to r ..."
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Cited by 1 (0 self)
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Summary. Two techniques are coupled to solve a model problem relative to the scattering of a 2D timeharmonic electromagnetic wave by an obstacle including an electrically deep cavity. Both of them are based on a boundary element method. The first technique uses a domain decomposition procedure
Shape derivatives of boundary integral operators in electromagnetic scattering
, 2010
"... We develop the shape derivative analysis of solutions to the problem of scattering of timeharmonic electromagnetic waves by a bounded penetrable obstacle. Since boundary integral equations are a classical tool to solve electromagnetic scattering problems, we study the shape differentiability proper ..."
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Cited by 5 (3 self)
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We develop the shape derivative analysis of solutions to the problem of scattering of timeharmonic electromagnetic waves by a bounded penetrable obstacle. Since boundary integral equations are a classical tool to solve electromagnetic scattering problems, we study the shape differentiability
On the KleinmanMartin integral equation method for the electromagnetic scattering problem by a dielectric
 Proc. 9th Internationale Conference on Mathematical and Numerical Aspects of Wave Propagation
, 2009
"... The interface problem describing the scattering of timeharmonic electromagnetic waves by a dielectric body is often formulated as a pair of coupled boundary integral equations for the electric and magnetic current densities on the interface Γ. In this paper, following an idea developped by R. Klein ..."
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Cited by 6 (6 self)
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The interface problem describing the scattering of timeharmonic electromagnetic waves by a dielectric body is often formulated as a pair of coupled boundary integral equations for the electric and magnetic current densities on the interface Γ. In this paper, following an idea developped by R
Results 1  10
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267,611