A MeV-Scale Dark QCD Solution to the Axion Domain Wall Problem
Abstract
PQ solution to the strong CP problem probably encounters the axion domain wall problem. In this article, we propose a simple and testable solution, assuming that the possesses mixed anomaly to a hidden color. Then, the axion field receives a new cosine potential from the hidden instantons, which breaks the subgroup explicitly. The new potential lifts the vacua degeneracy, but also drives the effective angle away from the origin, re-incuring the strong CP problem. However, we find that the dark QCD scale within the 0.1 to 3 MeV window survives, maintaining a delicate balance. Two observational signatures are explored: gravitational waves from domain wall collapse, already probed by current PTAs, and di-photon signals from axion-dark-glueball mixing, which require next-generation MeV telescopes. The scenario favors a cold dark QCD sector consistent with dark glueball relic constraints.
Cite
@article{arxiv.2607.04137,
title = {A MeV-Scale Dark QCD Solution to the Axion Domain Wall Problem},
author = {Jun Guo and Zhaofeng Kang and Jiang Zhu},
journal= {arXiv preprint arXiv:2607.04137},
year = {2026}
}
Comments
15 pages 3 figures