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A boundary-singular two-dimensional partial data inverse problem

2018/09/17 by Freddy J. F. Symons, Symons, Freddy J. F.
Mathematics · Engineering · Computer Science · #Numerical methods in inverse problems #Microwave Imaging and Scattering Analysis #Advanced Mathematical Modeling in Engineering

paper · pdf · doi:10.48550/arxiv.1809.06395

Abstract

We consider uniqueness in an inverse Schrödinger problem in a bounded domain in ℝ2 given the Dirichlet-to-Neumann map on part of the boundary. On the remaining boundary we impose a new type of singular boundary condition with unknown parameter. Owing to recent results on this class of boundary conditions, we discuss the necessity of an extra point condition to well-define the data for the inverse problem. Our results are two-fold. At a single frequency the inverse problem displays non-uniqueness, since an unknown boundary condition can spoil `seeing' the Schrödinger potential via the Dirichlet-to-Neumann map. On the other hand, taking as input data the Dirichlet-to-Neumann map at every frequency λ∈ℝ for which it is well-defined yields full uniqueness of the potential and all the boundary conditions. We adapt recent methods in related two-dimensional inverse problems and develop new techniques to cope with the singularity in the boundary condition.

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