Extra-Dimensional η-Invariants and Anomaly Theories

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Main Authors: Cvetič, Mirjam, Donagi, Ron, Heckman, Jonathan J., Hübner, Max
Format: Preprint
Published: 2025
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author Cvetič, Mirjam
Donagi, Ron
Heckman, Jonathan J.
Hübner, Max
author_facet Cvetič, Mirjam
Donagi, Ron
Heckman, Jonathan J.
Hübner, Max
contents Anomalies of a quantum field theory (QFT) constitute fundamental non-perturbatively robust data. In this paper we extract anomalies of 5D superconformal field theories (SCFTs) directly from the underlying extra-dimensional geometry. We show that all of this information can be efficiently extracted from extra-dimensional $η$-invariants, bypassing previously established approaches based on computationally cumbersome blowup / resolution techniques. We illustrate these considerations for 5D SCFTs engineered in M-theory by non-compact geometries $X=\mathbb{C}^3/Γ$ with finite subgroup $Γ\subset SU(3)$, where the anomalies are determined by the $η$-invariants of the asymptotic boundary $\partial X=S^5/Γ$. Our results apply equally to Abelian and non-Abelian $Γ$, as well as isolated and non-isolated singularities. In the setting of non-isolated singularities we further analyze the interplay of anomaly structures across different strata of the singular locus. Our considerations extend readily to backgrounds which are not global orbifolds, as well as those which do not preserve supersymmetry.
format Preprint
id arxiv_https___arxiv_org_abs_2512_17906
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extra-Dimensional η-Invariants and Anomaly Theories
Cvetič, Mirjam
Donagi, Ron
Heckman, Jonathan J.
Hübner, Max
High Energy Physics - Theory
Algebraic Topology
Differential Geometry
Anomalies of a quantum field theory (QFT) constitute fundamental non-perturbatively robust data. In this paper we extract anomalies of 5D superconformal field theories (SCFTs) directly from the underlying extra-dimensional geometry. We show that all of this information can be efficiently extracted from extra-dimensional $η$-invariants, bypassing previously established approaches based on computationally cumbersome blowup / resolution techniques. We illustrate these considerations for 5D SCFTs engineered in M-theory by non-compact geometries $X=\mathbb{C}^3/Γ$ with finite subgroup $Γ\subset SU(3)$, where the anomalies are determined by the $η$-invariants of the asymptotic boundary $\partial X=S^5/Γ$. Our results apply equally to Abelian and non-Abelian $Γ$, as well as isolated and non-isolated singularities. In the setting of non-isolated singularities we further analyze the interplay of anomaly structures across different strata of the singular locus. Our considerations extend readily to backgrounds which are not global orbifolds, as well as those which do not preserve supersymmetry.
title Extra-Dimensional η-Invariants and Anomaly Theories
topic High Energy Physics - Theory
Algebraic Topology
Differential Geometry
url https://arxiv.org/abs/2512.17906