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On the stability of the Yamabe invariant of $S^3$

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arxiv 2402.00815 v1 pith:DS5DPQDV submitted 2024-02-01 math.DG

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keywords mathbbeuclideancloseinvariantmustspacestabilitythen
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abstract

Let $g$ be a complete, asymptotically flat metric on $\mathbb{R}^3$ with vanishing scalar curvature. Moreover, assume that $(\mathbb{R}^3,g)$ supports a nearly Euclidean $L^2$ Sobolev inequality. We prove that $(\mathbb{R}^3,g)$ must be close to Euclidean space with respect to the $d_p$-distance defined by Lee-Naber-Neumayer. We then discuss some consequences for the stability of the Yamabe invariant of $S^3$. More precisely, we show that if such a manifold $(\mathbb{R}^3,g)$ carries a suitably normalized, positive solution to $\Delta_g w + \lambda w^5 = 0$ then $w$ must be close, in a certain sense, to a conformal factor that transforms Euclidean space into a round sphere.

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Cited by 1 Pith paper

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  1. Euclidean Domains with Nearly Maximal Yamabe Quotient

    math.DG 2025-01 conditional novelty 7.0 of 10

    A domain in R^3 whose Yamabe quotient is close to the maximal ball value is close to a ball: diffeomorphic, nearly round, and Gromov-Hausdorff close after scaling.

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