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arXiv · 2509.20325

On the Poincaré-Einstein manifolds with cylindrical conformal infinity

Abstract

In this paper, we prove several rigidity and quantitative rigidity results for asymptotically hyperbolic Poincaré-Einstein manifolds whose conformal infinities are diffeomorphic to a cylinder $S^1 \times S^{n - 1}$. It is a basic fact that the Riemannian product $S^1 \times S^{n - 1}$ can bound, in addition to a complete hyperbolic metric on $S^1 \times D^n$, other Poincaré-Einstein metrics such as the AdS-Schwarzschild metrics on $D^2 \times S^{n - 1}$. The main result shows that any Poincaré-Einstein filling of $S^1 \times S^{n - 1}$ must be hyperbolic if it is non-positively curved. As corollaries, the Poincaré-Einstein filling of $S^1 \times S^{n - 1}$ is unique when the length of circle factor is sufficiently large or the $L^2$-energy of the Weyl curvature is sufficiently small relative to the Yamabe constant of the conformal infinity. To prove the Weyl pinching rigidity, we established a new $ε$-regularity for the Weyl curvature of a general class of Poincaré-Einstein manifolds with conformal infinity of positive Yamabe type, which includes non-compact and volume-collapsed families of Poincaré-Einstein spaces in all dimensions.

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Sun-Yung Alice Chang, Paul Yang, Ruobing Zhang. 2025-09-24. On the Poincaré-Einstein manifolds with cylindrical conformal infinity. https://arxiv.org/abs/2509.20325

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