Refined BPS invariants of 6d SCFTs from anomalies and modularity
Jie Gu, Min-xin Huang, Amir-Kian Kashani-Poor, Albrecht Klemm

TL;DR
This paper develops a modular and anomaly-based framework to compute refined BPS invariants of 6d SCFTs from F-theory compactifications, providing explicit formulas and solving key examples like E-string and M-string theories.
Contribution
It introduces a novel method to express BPS partition functions as ratios of weak Jacobi forms, fixed by modularity and anomaly equations, enabling explicit calculations for various 6d SCFTs.
Findings
Successfully computed BPS invariants for E-string and M-string theories.
Demonstrated cancellation of spurious singularities in partition functions.
Tested a generalized blowup equation using obtained invariants.
Abstract
F-theory compactifications on appropriate local elliptic Calabi-Yau manifolds engineer six dimensional superconformal field theories and their mass deformations. The partition function of the refined topological string on these geometries captures the particle BPS spectrum of this class of theories compactified on a circle. Organizing in terms of contributions at base degree of the elliptic fibration, we find that these, up to a multiplier system, are meromorphic Jacobi forms of weight zero with modular parameter the Kaehler class of the elliptic fiber and elliptic parameters the couplings and mass parameters. The indices with regard to the multiple elliptic parameters are fixed by the refined holomorphic anomaly equations, which we show to be completely determined from knowledge of the chiral anomaly of the corresponding SCFT. We express …
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