arXiv · 2506.19422
Sharp numerical approximation of the Hardy constant
Abstract
We study the $P_1$ finite element approximation of the best constant in the classical Hardy inequality over bounded domains containing the origin in $\mathbb{R}^N$, for $N \geq 3$. Despite the fact that this constant is not attained in the associated Sobolev space $H^1$, our main result establishes an explicit, sharp, and dimension-independent rate of convergence proportional to $1/|\log h|^2$. The analysis carefully combines an improved Hardy inequality involving a reminder term with logarithmic weights, approximation estimates for Hardy-type singular radial functions constituting minimizing sequences, properties of piecewise linear and continuous finite elements, and weighted Sobolev space techniques. We also consider other closely related spectral problems involving the Laplacian with singular quadratic potentials obtaining sharp convergence rates.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Liviu I. Ignat, Enrique Zuazua. 2025-06-24. Sharp numerical approximation of the Hardy constant. https://arxiv.org/abs/2506.19422
Cite the original work for its findings. Save a collection to share your selection of sources.