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Positive solutions to Schr\"odinger equations and geometric applications

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arxiv 2007.07191 v3 pith:3GZSRLG2 submitted 2020-07-14 math.DG math.AP

classification math.DGmath.AP
keywords positiveendsfinitenessinequalitymanifoldnumberodingerresult
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A variant of Li-Tam theory, which associates to each end of a complete Riemannian manifold a positive solution of a given Schr\"odinger equation on the manifold, is developed. It is demonstrated that such positive solutions must be of polynomial growth of fixed order under a suitable scaling invariant Sobolev inequality. Consequently, a finiteness result for the number of ends follows. In the case when the Sobolev inequality is of particular type, the finiteness result is proven directly. As an application, an estimate on the number of ends for shrinking gradient Ricci solitons and submanifolds of Euclidean space is obtained.

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