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Low regularity theory for the inverse fractional conductivity problem

Jesse Railo, Philipp Zimmermann

2023Nonlinear Analysis14 citationsDOIOpen Access PDF

Abstract

We characterize partial data uniqueness for the inverse fractional conductivity problem with Hs,n/s regularity assumptions in all dimensions. This extends the earlier results for H2s,n2s∩Hs conductivities by Covi and the authors. We construct counterexamples to uniqueness on domains bounded in one direction whenever measurements are performed in disjoint open sets having positive distance to the domain. In particular, we provide counterexamples in the special cases s∈(n/4,1), n=2,3, missing in the literature due to the earlier regularity conditions. We also give a new proof of the uniqueness result which is not based on the Runge approximation property. Our work can be seen as a fractional counterpart of Haberman’s uniqueness theorem for the classical Calderón problem with W1,n conductivities when n=3,4. One motivation of this work is Brown’s conjecture that uniqueness for the classical Calderón problem holds for W1,n conductivities also in dimensions n≥5.

Topics & Concepts

CounterexampleUniquenessMathematicsBounded functionConjectureDisjoint setsDomain (mathematical analysis)InverseUniqueness theorem for Poisson's equationPure mathematicsMathematical analysisCombinatoricsGeometryNumerical methods in inverse problemsAdvanced Mathematical Modeling in EngineeringNumerical methods in engineering
Low regularity theory for the inverse fractional conductivity problem | Litcius