Exponential instability in the fractional Calder\'on problem

Abstract

In this note we prove the exponential instability of the fractional Calder\'on problem and thus prove the optimality of the logarithmic stability estimate from RS17. In order to infer this result, we follow the strategy introduced by Mandache in M01 for the standard Calder\'on problem. Here we exploit a close relation between the fractional Calder\'on problem and the classical Poisson operator. Moreover, using the construction of a suitable orthonormal basis, we also prove (almost) optimality of the Runge approximation result for the fractional Laplacian, which was derived in RS17. Finally, in one dimension, we show a close relation between the fractional Calder\'on problem and the truncated Hilbert transform.

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