English

Acoustic Scattering from Corners, Edges and Circular Cones

Analysis of PDEs 2018-01-17 v1

Abstract

Consider the time-harmonic acoustic scattering from a bounded penetrable obstacle imbedded in an isotropic homogeneous medium. The obstacle is supposed to possess a circular conic point or an edge point on the boundary in three dimensions and a planar corner point in two dimensions. The opening angles of cones and edges are allowed to be any number in (0,2π)\{π}(0,2\pi)\backslash\{\pi\}. We prove that such an obstacle scatters any incoming wave non-trivially (i.e., the far field patterns cannot vanish identically), leading to the absence of real non-scattering wavenumbers. Local and global uniqueness results for the inverse problem of recovering the shape of a penetrable scatterers are also obtained using a single incoming wave. Our approach relies on the singularity analysis of the inhomogeneous Laplace equation in a cone.

Keywords

Cite

@article{arxiv.1603.05186,
  title  = {Acoustic Scattering from Corners, Edges and Circular Cones},
  author = {Johannes Elschner and Guanghui Hu},
  journal= {arXiv preprint arXiv:1603.05186},
  year   = {2018}
}
R2 v1 2026-06-22T13:12:29.853Z