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Anomalies on ALE spaces and phases of gauge theory

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arxiv 2512.11970 v2 pith:PRGLTJXS submitted 2025-12-12 hep-th cond-mat.str-elhep-ph

Anomalies on ALE spaces and phases of gauge theory

classification hep-th cond-mat.str-elhep-ph
keywords anomaliesanomalyboundarytheoryadditionalasymptoticasymptoticallyclosed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We show that certain 't Hooft anomalies not detected by standard closed four-dimensional probes can become visible when a quantum field theory is placed on asymptotically locally Euclidean (ALE) spaces. As a concrete example, we use the Eguchi-Hanson (EH) space, whose defining features are its nontrivial second cohomology generated by the self-intersecting two-sphere and its asymptotic boundary $\mathbb{RP}^3$, which carries torsion and thus furnishes additional cohomological data absent on conventional backgrounds. For a theory with symmetry $G_1\times G_2$, we turn on background flux for $G_1$ and probe potential anomalies by performing a global $G_2$ transformation; the resulting anomaly is captured by a five-dimensional mapping torus. The anomaly receives contributions from the four-dimensional characteristic classes on EH space as well as from the $\eta$-invariant associated with the $\mathbb{RP}^3$ boundary. The anomaly detected in this way imposes additional constraints on asymptotically free gauge theories with fixed trivial asymptotic boundary conditions. In particular, infrared composite spectra that match anomalies on standard closed manifolds may nevertheless fail to reproduce the EH anomaly, and thus cannot by themselves furnish a complete symmetry-preserving infrared realization.

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  1. $S$-duality, boundary states, and higher-form symmetries on ALE spaces

    hep-th 2026-05 unverdicted novelty 5.0

    Maxwell theory on ALE spaces yields vector-valued modular boundary states whose gluing produces ordinary closed-manifold partition functions, with extensions to mixed electric-magnetic 1-form anomalies.