A note on the lower bounds of the first nonzero Steklov eigenvalue on compact manifolds

Fuente: arXiv
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Main Authors: Liu, Yiwei, Yang, Yi-Hu
Format: Preprint
Published: 2026
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author Liu, Yiwei
Yang, Yi-Hu
author_facet Liu, Yiwei
Yang, Yi-Hu
contents Let $(Ω^{n+1}, g)$ be an $(n+1)$-dimensional smooth compact connected Riemannian manifold with smooth boundary $Σ$, satisfying that ${\text{Ric}_Ω}\ge 0$ and $Σ$ is strictly convex, more precisely, its second fundamental form $h\ge cg_Σ$ for some positive constant $c$. Escobar {\cite{escobar1997geometry}} considered the first nonzero Steklov eigenvalue $σ_1$ of $(Ω^{n+1}, g)$ and proved that $σ_1\geq c$ when $n=1$ and $σ_1>{\frac{c}{2}}$ when $n \geq 2$. He then conjectured {\cite{escobar1999isoperimetric}} that the first nonzero Steklov eigenvalue $σ_1\ge c$. Very recently, Xia and Xiong {\cite{xia2023escobar}} confirmed Escobar's conjecture in the case that $Ω$ has nonnegative sectional curvature, by constructing a weight function and using appropriate integral identities. In this paper, we construct a new weight function under certain sectional curvature assumptions and provide some new lower bounds for the first nonzero Steklov eigenvalue, which can be considered as generalizations of the results of Escobar and Xia-Xiong. As an application of the weight function, we also consider lower bound estimate of the first nonzero Steklov eigenvalue under conformal transformations.
format Preprint
id arxiv_https___arxiv_org_abs_2601_06951
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A note on the lower bounds of the first nonzero Steklov eigenvalue on compact manifolds
Liu, Yiwei
Yang, Yi-Hu
Differential Geometry
Let $(Ω^{n+1}, g)$ be an $(n+1)$-dimensional smooth compact connected Riemannian manifold with smooth boundary $Σ$, satisfying that ${\text{Ric}_Ω}\ge 0$ and $Σ$ is strictly convex, more precisely, its second fundamental form $h\ge cg_Σ$ for some positive constant $c$. Escobar {\cite{escobar1997geometry}} considered the first nonzero Steklov eigenvalue $σ_1$ of $(Ω^{n+1}, g)$ and proved that $σ_1\geq c$ when $n=1$ and $σ_1>{\frac{c}{2}}$ when $n \geq 2$. He then conjectured {\cite{escobar1999isoperimetric}} that the first nonzero Steklov eigenvalue $σ_1\ge c$. Very recently, Xia and Xiong {\cite{xia2023escobar}} confirmed Escobar's conjecture in the case that $Ω$ has nonnegative sectional curvature, by constructing a weight function and using appropriate integral identities. In this paper, we construct a new weight function under certain sectional curvature assumptions and provide some new lower bounds for the first nonzero Steklov eigenvalue, which can be considered as generalizations of the results of Escobar and Xia-Xiong. As an application of the weight function, we also consider lower bound estimate of the first nonzero Steklov eigenvalue under conformal transformations.
title A note on the lower bounds of the first nonzero Steklov eigenvalue on compact manifolds
topic Differential Geometry
url https://arxiv.org/abs/2601.06951