Strong CP as an Infrared Holonomy: The Vacuum and Dressing in Yang-Mills Theory
arXiv:2512.24480
Abstract
We reformulate the strong problem from an infrared viewpoint in which the vacuum angle is not treated as a local coupling but as a global Berry-type holonomy of the infrared-dressed state space over . Infrared dressing is described as adiabatic parallel transport of physical states in configuration space, generated by an infrared connection . Using the Chern-Simons collective coordinate, we show that the Pontryagin index emerges as an integer infrared winding, such that the resulting holonomy phase is quantized by and reproduces the standard weight . A quantum rotor provides a controlled infrared example illustrating why broad classes of local correlators may remain insensitive to , while global response functions, such as the vacuum energy curvature and the topological susceptibility, retain a nontrivial dependence. We contrast this picture with recent claims of --independence based on the order of limits and show that it is consistent with both the rotor benchmark and the classic Witten-Veneziano perspective.
15 pages