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An inverse problem for general minimal surfaces

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arxiv 2310.14268 v1 pith:XSYAA2CF submitted 2023-10-22 math.AP math.DG

classification math.APmath.DG
keywords minimalsurfaceinverseproblemsigmaapplicationscalculuscondition
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abstract

In this paper we consider an inverse problem of determining a minimal surface embedded in a Riemannian manifold. We show under a topological condition that if $\Sigma$ is a $2$-dimensional embedded minimal surface, then the knowledge of the Dirichlet-to-Neumann map associated to the minimal surface equation determines $\Sigma$ up to an isometry. Without the topological condition, we show that a conformal factor of a general minimal surface $\Sigma$ can be recovered. We develop a semiclassical nonlinear calculus for complex geometric optics solutions, which allows an efficient error analysis for multiplication of the correction terms of the solutions. The calculus is independent of the application to the minimal surface equation and we expect it to have applications in various inverse problems for nonlinear equations in dimension $2$, in both $\mathbb{R}^2$ and geometric settings. Other applications of the results include generalized boundary rigidity problem and the AdS/CFT correspondence in physics.

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  1. Gauge rigidity in an inverse problem for the prescribed Gaussian curvature equation

    math.AP 2026-07 accept novelty 6.5 of 10

    If two positive curvatures share the same first boundary jet and induce the same nonlinear DN map on a common open class of admissible boundary data, then the curvatures coincide throughout a planar domain.

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