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On the Calderón problem with piecewise polynomial anisotropic conductivities and many-flat-face interfaces
[Submitted on 14 Jun 2026] · 2026-06-16 · via math updates on arXiv.org

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Abstract:We prove uniqueness for a finite-dimensional anisotropic Calderón problem in dimension \(n\ge 3\). The conductivity is a symmetric uniformly elliptic matrix field which is cellwise polynomial with respect to a known finite partition, and it may be discontinuous across interfaces. Under a geometric assumption allowing the cells to be reached successively through sufficiently many flat interface patches, the local Dirichlet-to-Neumann map on an initial boundary patch determines all polynomial pieces. The proof combines a one-cell recovery result from flat-face boundary data with a layer-stripping argument, using Runge approximation and unique continuation to propagate the data across already recovered cells. As a consequence of a finite-dimensional analytic stability theorem, the recovery is Hölder stable on compact admissible parameter sets.

Submission history

From: Cătălin Cârstea [view email]
[v1] Sun, 14 Jun 2026 19:04:15 UTC (24 KB)