English

Refined BPS invariants of 6d SCFTs from anomalies and modularity

High Energy Physics - Theory 2018-02-14 v2 Algebraic Geometry

Abstract

F-theory compactifications on appropriate local elliptic Calabi-Yau manifolds engineer six dimensional superconformal field theories and their mass deformations. The partition function ZtopZ_{top} of the refined topological string on these geometries captures the particle BPS spectrum of this class of theories compactified on a circle. Organizing ZtopZ_{top} in terms of contributions ZβZ_\beta at base degree β\beta 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 ZβZ_\beta as a quotient of weak Jacobi forms, with a universal denominator inspired by its pole structure as suggested by the form of ZtopZ_{top} in terms of 5d BPS numbers. The numerator is determined by modularity up to a finite number of coefficients, which we prove to be fixed uniquely by imposing vanishing conditions on 5d BPS numbers as boundary conditions. We demonstrate the feasibility of our approach with many examples, in particular solving the E-string and M-string theories including mass deformations, as well as theories constructed as chains of these. We make contact with previous work by showing that spurious singularities are cancelled when the partition function is written in the form advocated here. Finally, we use the BPS invariants of the E-string thus obtained to test a generalization of the Goettsche-Nakajima-Yoshioka KK-theoretic blowup equation, as inspired by the Grassi-Hatsuda-Marino conjecture, to generic local Calabi-Yau threefolds.

Keywords

Cite

@article{arxiv.1701.00764,
  title  = {Refined BPS invariants of 6d SCFTs from anomalies and modularity},
  author = {Jie Gu and Min-xin Huang and Amir-Kian Kashani-Poor and Albrecht Klemm},
  journal= {arXiv preprint arXiv:1701.00764},
  year   = {2018}
}

Comments

64 pages; v2: typos corrected