2012
DOI: 10.1002/mma.2511
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A linear sampling method for inverse problems of diffraction gratings of mixed type

Abstract: This paper is concerned with the direct and inverse problem of scattering of a time‐harmonic wave by a Lipschitz diffraction grating of mixed type. The scattering problem is modeled by the mixed boundary value problem for the Helmholtz equation in the unbounded half‐plane domain above a periodic Lipschitz surface on which a mixed Dirichlet and impedance boundary condition is imposed. We first establish the well‐posedness of the direct problem, employing the variational method, and then extend Isakov's method t… Show more

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Cited by 11 publications
(13 citation statements)
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“…One can find recent developments of the linear sampling method in [10,11]. The linear sampling method has been extended to inverse scattering involving periodic media, in [15,16,33]. However, in spite of the advantages of the method, a full mathematical justification still remains open, see [10].…”
Section: Introductionmentioning
confidence: 99%
“…One can find recent developments of the linear sampling method in [10,11]. The linear sampling method has been extended to inverse scattering involving periodic media, in [15,16,33]. However, in spite of the advantages of the method, a full mathematical justification still remains open, see [10].…”
Section: Introductionmentioning
confidence: 99%
“…The numerical reconstruction results presented in [9] have shown the efficiency of the algorithm. The implementation of the above algorithm for the three-dimensional case of the full Maxwell equations is still in progress.…”
Section: Remark 42mentioning
confidence: 93%
“…For F ×h ∈ B * := Y( D ) ×L 2 t ( I ), we are going to prove that F = 0,h= 0 under the assumption that <Hg, F ×h> B,B * = 0 for any g ∈ L 2 t ( b ). Recalling that the duality between Y( D ) and Y( D ) is defined by (9) and the duality between L 2 t ( I ) and L 2 t ( I ) is the L 2 scalar product, we have…”
Section: Proofmentioning
confidence: 99%
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“…There also exist some numerical methods in reconstructing periodic structures. For example, a linear sampling method was developed in [20,22] for determining the shape of partially coated bi-periodic structures, and in [35] a novel linear sampling method was introduced for simultaneously reconstructing dielectric grating structures in an inhomogeneous periodic medium. See also [10] for a finite element method or [3,4,17] for the factorization method in determining the periodic structures, or [30] for the uniquely reconstruction of a locally perturbed infinite plane.…”
Section: Introductionmentioning
confidence: 99%