1998•Communications in Analysis and GeometryOpen access

Comparison and rigidity theorems in semi-Riemannian geometry

Lars Andersson, Ralph Howard

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Abstract

The comparison theory for the Riccati equation satisfied by the shape operator of parallel hypersurfaces is generalized to semi-Riemannian manifolds of arbitrary index, using one-sided bounds on the Riemann tensor which in the Riemannian case correspond to one-sided bounds on the sectional curvatures.Starting from 2-dimensional rigidity results and using an inductive technique, a new class of gap-type rigidity theorems is proved for semi-Riemannian manifolds of arbitrary index, generalizing those first given by Gromov and Greene-Wu.As applications we prove rigidity results for semi-Riemannian manifolds with simply connected ends of constant curvature.Contents.

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The comparison theory for the Riccati equation satisfied by the shape operator of parallel hypersurfaces is generalized to semi-Riemannian manifolds of arbitrary index, using one-sided bounds on the Riemann tensor which in the Riemannian case correspond to one-sided bounds on the sectional curvatures.Starting from 2-dimensional rigidity results and using an inductive technique, a new class of gap-type rigidity theorems is proved for semi-Riemannian manifolds of arbitrary index, generalizing those first given by Gromov and Greene-Wu.As applications we prove rigidity results for semi-Riemannian manifolds with simply connected ends of constant curvature.Contents.

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Available abstract

The comparison theory for the Riccati equation satisfied by the shape operator of parallel hypersurfaces is generalized to semi-Riemannian manifolds of arbitrary index, using one-sided bounds on the Riemann tensor which in the Riemannian case correspond to one-sided bounds on the sectional curvatures.Starting from 2-dimensional rigidity results and using an inductive technique, a new class of gap-type rigidity theorems is proved for semi-Riemannian manifolds of arbitrary index, generalizing those first given by Gromov and Greene-Wu.As applications we prove rigidity results for semi-Riemannian manifolds with simply connected ends of constant curvature.Contents.

Key concepts: Mathematics, Rigidity (electromagnetism), Riemannian geometry, Sectional curvature, Riemann curvature tensor, Curvature of Riemannian manifolds, Mathematical analysis, Curvature

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