Inverse time-harmonic electromagnetic scattering from coated polyhedral scatterers with a single far-field pattern
Analysis of PDEs
2021-01-22 v3 Mathematical Physics
math.MP
Abstract
It is proved that a convex polyhedral scatterer of impedance type can be uniquely determined by the electric far-field pattern of a non-vanishing incident field. The incoming wave is allowed to bean electromagnetic plane wave, a vector Herglotz wave function or a point source wave incited by some magnetic dipole. Our proof relies on the reflection principle for Maxwell's equations with the impedance (or Leontovich) boundary condition enforcing on a hyper-plane. We prove that it is impossible to analytically extend the total field across any vertex of the scatterer. This leads to a data-driven inversion scheme for imaging an arbitrary convex polyhedron.
Cite
@article{arxiv.2004.04392,
title = {Inverse time-harmonic electromagnetic scattering from coated polyhedral scatterers with a single far-field pattern},
author = {Guang-Hui Hu and Manmohan Vashisth and Jiaqing Yang},
journal= {arXiv preprint arXiv:2004.04392},
year = {2021}
}
Comments
Updated the several sections of the paper