English

Flops and Fibral Geometry of E$_7$-models

High Energy Physics - Theory 2020-04-14 v1 Mathematical Physics Algebraic Geometry math.MP

Abstract

An E7_7-Weierstrass model is conjectured to have eight distinct crepant resolutions whose flop diagram is a Dynkin diagram of type E8_8. In previous work, we explicitly constructed four distinct resolutions, for which the flop diagram formed a D4_4 sub-diagram. The goal of this paper is to explore those properties of a resolved E7_7-model which are not invariant under flops. In particular, we examine the fiber degenerations, identify the fibral divisors up to isomorphism, and study violation of flatness appearing over certain codimension-three loci in the base, where a component of the fiber grows in dimension from a rational curve to a rational surface. For each crepant resolution, we compute the triple intersection polynomial and the linear form induced by the second Chern class, as well as the holomorphic and ordinary Euler characteristics, and the signature of each fibral divisor. We identify the isomorphism classes of the rational surfaces that break the flatness of the fibration. Moreover, we explicitly show that the D4_4 flops correspond to the crepant resolutions of the orbifold given by C3\mathbb{C}^3 quotiented by the Klein four-group.

Cite

@article{arxiv.2004.06104,
  title  = {Flops and Fibral Geometry of E$_7$-models},
  author = {Mboyo Esole and Sabrina Pasterski},
  journal= {arXiv preprint arXiv:2004.06104},
  year   = {2020}
}

Comments

26 pages+appendices, figures, tables

R2 v1 2026-06-23T14:49:46.314Z