Although the Hardy inequality corresponding to one quadratic singularity, with optimal constant, does not admit any extremal function, it is well known that such a potential can be improved, in the sense that a positive term can be added to the quadratic singularity without violating the inequality, and even a whole asymptotic expansion can be built, with optimal constants for each term. This phenomenon has not been much studied for other inequalities. Our purpose is to prove that it also holds for the gaussian Poincaré inequality. The method is based on a recursion formula, which allows to identify the optimal constants in the asymptotic expansion, order by order. We also apply the same strategy to a family of Hardy-Poincare inequalities which interpolate between Hardy and gaussian Poincaré inequalities. (C) 2012 Elsevier Ltd. All rights reserved.

Improved Poincaré inequalities

VOLZONE, Bruno
2012-01-01

Abstract

Although the Hardy inequality corresponding to one quadratic singularity, with optimal constant, does not admit any extremal function, it is well known that such a potential can be improved, in the sense that a positive term can be added to the quadratic singularity without violating the inequality, and even a whole asymptotic expansion can be built, with optimal constants for each term. This phenomenon has not been much studied for other inequalities. Our purpose is to prove that it also holds for the gaussian Poincaré inequality. The method is based on a recursion formula, which allows to identify the optimal constants in the asymptotic expansion, order by order. We also apply the same strategy to a family of Hardy-Poincare inequalities which interpolate between Hardy and gaussian Poincaré inequalities. (C) 2012 Elsevier Ltd. All rights reserved.
2012
Hardy inequality
Poincaré inequality
Best constant
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1308831
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