arXiv · 2509.06380
The quantitative behavior of $α$-Yang-Mills-Higgs fields on surfaces
Abstract
We investigate the blow-up behavior of $α$-Yang--Mills--Higgs ($α$-YMH) fields over closed Riemannian surfaces with the target fiber $F = S^{K-1} \subset \mathbb{R}^K$ being the round sphere, focusing on the establishment of the $α$-energy identity and the no-neck property during the bubbling process. A central innovation is the identification of a hidden Jacobian structure through Hodge decomposition and a new conservation law. Furthermore, we derive a Pohozaev-type identity for $α$-YMH fields, which enables refined control of the energy density. Together, these advances ensure the validity of the $α$-energy identity as $α\to 1$. Our analysis further sharpens the Lorentz space estimates from the $L^{2,\infty}$ to the optimal $L^{2,1}$ scale, ultimately yielding the no-neck property in the blow-up regime. These results provide a unified and quantitative framework for understanding singularity formation in variational gauge theories.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Wanjun Ai, Jiayu Li, Miaomiao Zhu. 2025-09-08. The quantitative behavior of $α$-Yang-Mills-Higgs fields on surfaces. https://arxiv.org/abs/2509.06380
Cite the original work for its findings. Save a collection to share your selection of sources.