English

Spherical maximal functions and Hardy spaces for Fourier integral operators

Classical Analysis and ODEs 2026-02-24 v3 Analysis of PDEs

Abstract

We use the Hardy spaces for Fourier integral operators to obtain bounds for spherical maximal functions in Lp(Rn)L^{p}(\mathbb{R}^{n}), n2n\geq2, where the radii of the spheres are restricted to a compact interval in (0,)(0,\infty). These bounds extend to general hypersurfaces with non-vanishing Gaussian curvature, to the complex spherical means, and to geodesic spheres on compact manifolds. We also obtain improved maximal function bounds and pointwise convergence statements for wave equations, both on Rn\mathbb{R}^{n} and on compact manifolds. The maximal function bounds are essentially sharp for all p[1,2][2(n+1)n1,)p\in[1,2]\cup [\frac{2(n+1)}{n-1},\infty), for each such hypersurface, every complex spherical mean, and on every manifold.

Keywords

Cite

@article{arxiv.2401.16955,
  title  = {Spherical maximal functions and Hardy spaces for Fourier integral operators},
  author = {Abhishek Ghosh and Naijia Liu and Jan Rozendaal and Liang Song},
  journal= {arXiv preprint arXiv:2401.16955},
  year   = {2026}
}

Comments

35 pages. Minor changes to the previous version. To appear in Journal of Geometric Analysis

R2 v1 2026-06-28T14:31:40.861Z