English

Decay and Strichartz estimates for critical electromagnetic wave equations on conic manifolds

Analysis of PDEs 2025-06-12 v1 Differential Geometry

Abstract

We establish the decay and Strichartz estimates for the wave equation with large scaling-critical electromagnetic potentials on a conical singular space (X,g)(X,g) with dimension n3n\geq3, where the metric g=dr2+r2hg=dr^2+r^2 h and X=C(Y)=(0,)×YX=C(Y)=(0,\infty)\times Y is a product cone over the closed Riemannian manifold (Y,h)(Y,h) with metric hh. The decay assumption on the magnetic potentials is scaling critical and includes the decay of Coulomb type. The main technical innovation lies in proving localized pointwise estimates for the half-wave propagator by constructing a localized spectral measure, which effectively separates contributions from conjugate point pairs on \CS\CS. In particular, when Y=Sn1Y=\mathbb{S}^{n-1}, our results, which address the case of large critical electromagnetic potentials, extend and improve upon those in [21], which considered sufficiently decaying, and small potentials and that of [24], which considered potentials decaying faster than scaling critical ones.

Keywords

Cite

@article{arxiv.2506.09635,
  title  = {Decay and Strichartz estimates for critical electromagnetic wave equations on conic manifolds},
  author = {Qiuye Jia and Junyong Zhang},
  journal= {arXiv preprint arXiv:2506.09635},
  year   = {2025}
}