We derive a one-loop effective description of axion inflation by integrating out a heavy Dirac fermion with an inflaton-dependent complex mass undergoing a smooth localized threshold transition. The threshold induces correlated corrections to the inflaton and gauge sectors, including a Coleman-Weinberg term, a vacuum-polarization correction, and an anomaly-induced Chern-Simons coupling. Together, these effects transiently enhance and localize gauge-field production, generating a chiral stochastic gravitational-wave background in the deci-hertz band within the projected sensitivities of BBO and DECIGO, while remaining below representative primordial-black-hole bounds.
@article{arxiv.2604.13674,
title = {Axion Inflation from Heavy-Fermion One-Loop Effects},
author = {Kai-Ge Zhang and Jian-Feng He and Chengjie Fu and Zong-Kuan Guo},
journal= {arXiv preprint arXiv:2604.13674},
year = {2026}
}