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arXiv · 2602.17501

A Lower Bound for the First Non-zero Basic Eigenvalue on a Singular Riemannian Foliation

Abstract

In this paper, we provide the lower bounds of the first non-zero basic eigenvalue on a closed singular Riemannian manifold $(M,\mathcal{F})$ with basic mean curvature that depends on the given non-negative lower bound of the Ricci curvature of $M$ and the diameter of the leaf space $M/\mathcal{F}$. These can be regarded as generalized versions of the Zhong-Yang estimate and a generalized Shi-Yang's estimate for singular Riemannian foliations with basic mean curvature. We also provide a rigidity result corresponding to the generalized Zhong-Yang estimate, which is a generalized Hang-Wang rigidity for singular Riemannian foliations with basic mean curvature. More precisely, when the first basic eigenvalue $λ_1^B$ is equal to $\frac{π^2}{d_{M/\mathcal{F}^2}} $, where $d_{M/\mathcal{F}}$ is the diameter of the leaf space, $M$ is isometric to a mapping torus of an isometry $φ:N\to N$ where $N$ is an $(n-1)$-dimensional Riemannian manifold of nonnegative Ricci curvature and $\mathcal{F}$ has the form $\{[\{\text{point}\}\times N]\}$.

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BibTeXRIS

Bach Tran. 2026-02-24. A Lower Bound for the First Non-zero Basic Eigenvalue on a Singular Riemannian Foliation. https://arxiv.org/abs/2602.17501

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