$6$D Anomaly-Free Matter Spectrum in F-theory on Singular Spaces
Abstract
In this paper we study the 6d localized charged matter spectrum of F-theory directly on a singular elliptic Calabi-Yau 3-fold, i.e. without smoothing via resolution or deformation of the entire fibration. Given only the base surface, discriminant locus, and the local system, we propose a general prescription for determining the charged matter spectrum localized at intersections of seven-branes, using the technology of string junctions. More precisely, at each codimension- collision of seven-branes, we determine the local seven-brane content and compute the number of massless string junctions modulo the action of the monodromy. We find agreement with the predicted results from d anomaly cancellation in all cases considered. Examples include a generic Weierstrass model with arbitrary Kodaira fiber intersecting an , as well as cases with jointly charged matter localized at intersections of non-abelian seven-branes.
Keywords
Cite
@article{arxiv.2110.06943,
title = {$6$D Anomaly-Free Matter Spectrum in F-theory on Singular Spaces},
author = {Antonella Grassi and James Halverson and Cody Long and Julius L. Shaneson and Benjamin Sung and Jiahua Tian},
journal= {arXiv preprint arXiv:2110.06943},
year = {2022}
}