An Extension of the Bianchi-Egnell Stability Estimate to Bakry, Gentil, and Ledoux's Generalization of the Sobolev Inequality to Continuous Dimensions · arXivDesk
1512.06121Dec 17, 2015This replaces the original article, which claimed to prove a Bianchi-Egnell Stability Estimate for an extension of the Sobolev Inequality to m+n>2 dimensions, n a positive integer and m>0 possibly noninteger. We are only able to prove the Bianchi-Egnell Stability Estimate extension for dimensions m+n>2 with m \geq 1. The only changes are in theorems 1.4 and Theorem 1.5
An Extension of the Bianchi-Egnell Stability Estimate to Bakry, Gentil, and Ledoux's Generalization of the Sobolev Inequality to Continuous Dimensions
This paper extends a stability estimate of the Sobolev Inequality established by G. Bianchi and H. Egnell in their paper "A note on the Sobolev Inequality." Bianchi and Egnell's Stability Estimate answers the question raised by H. Brezis and E. H. Lieb: "Is there a natural way to bound ∥∇φ∥22−CN2∥φ∥N−22N2
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from below in terms of the 'distance' of
φ
from the manifold of optimizers in the Sobolev Inequality?" Establishing stability estimates - also known as quantitative versions of sharp inequalities - of other forms of the Sobolev Inequality, as well as other sharp inequalities, is an active topic. In this paper, we extend Bianchi and Egnell's Stability Estimate to a Sobolev Inequality for "continuous dimensions." Bakry, Gentil, and Ledoux have recently proved a sharp extension of the Sobolev Inequality for functions on
R+×Rn
, which can be considered as an extension to "continuous dimensions." V. H. Nguyen determined all cases of equality. The present paper extends the Bianchi-Egnell stability analysis for the Sobolev Inequality to this "continuous dimensional" generalization.