textThe inverse problem of detecting the shape and location of a rigid scatterer fully embedded in a halfplane based solely on surficial measurements of the scatterer's response to illumination by plane waves, is solved numerically in the frequency domain, using integral equations within the general framework of PDE-constrained optimization. Two different, but closely related, physical problems are considered: first, scatterers embedded in the soil where SH waves are used for detection, and secondly, scatterers embedded in an acoustic fluid, where pressure waves are used for detection. The elastic case of SH waves gives rise to a traction-free surface and an associated Neumann condition, whereas the acoustic case gives rise to a pressure-fr...
There are many methods for identifying the shape and location of scatterers from far field data. We ...
Any acoustic plane wave incident to an elastic obstacle results in a scattered field with a correspo...
The direct problem of water-wave equations is the problem of determining the surface and its velocit...
We consider the problem of determining the shape of an object immersed in an acoustic medium from me...
In this paper we propose a simple method for detecting (shape, size and location) a scatterer embedd...
In this paper, we are concerned with the detection of point-like obstacles using elastic waves. We s...
AbstractIn this paper, we are concerned with the detection of point-like obstacles using elastic wav...
We consider the interaction between an elastic body and a compressible inviscid fluid, which occupie...
This article concerns an extension of the topological derivative concept for 3D inverse acoustic sca...
Abstract. This article concerns an extension of the topological derivative concept for 3D inverse ac...
International audienceThe cross sectional contour of a sound-soft closed cylindrical obstacle placed...
Numerical approaches for localization and shape quantification of multiple arbitrarily-shaped scatte...
In this study, we use the interferometric ghosts of the scattered surface waves for estimating the l...
textIn this dissertation we discuss the numerical treatment of two classical inverse problems: firs...
There are many methods for identifying the shape and location of scatterers from far field data. We ...
Any acoustic plane wave incident to an elastic obstacle results in a scattered field with a correspo...
The direct problem of water-wave equations is the problem of determining the surface and its velocit...
We consider the problem of determining the shape of an object immersed in an acoustic medium from me...
In this paper we propose a simple method for detecting (shape, size and location) a scatterer embedd...
In this paper, we are concerned with the detection of point-like obstacles using elastic waves. We s...
AbstractIn this paper, we are concerned with the detection of point-like obstacles using elastic wav...
We consider the interaction between an elastic body and a compressible inviscid fluid, which occupie...
This article concerns an extension of the topological derivative concept for 3D inverse acoustic sca...
Abstract. This article concerns an extension of the topological derivative concept for 3D inverse ac...
International audienceThe cross sectional contour of a sound-soft closed cylindrical obstacle placed...
Numerical approaches for localization and shape quantification of multiple arbitrarily-shaped scatte...
In this study, we use the interferometric ghosts of the scattered surface waves for estimating the l...
textIn this dissertation we discuss the numerical treatment of two classical inverse problems: firs...
There are many methods for identifying the shape and location of scatterers from far field data. We ...
Any acoustic plane wave incident to an elastic obstacle results in a scattered field with a correspo...
The direct problem of water-wave equations is the problem of determining the surface and its velocit...