English

Discrete Torsion in Singular G_2-Manifolds and Real LG

High Energy Physics - Theory 2007-05-23 v3

Abstract

We investigate strings at singularities of G_2-holonomy manifolds which arise in Z_2 orbifolds of Calabi-Yau spaces times a circle. The singularities locally look like R^4/Z_2 fibered over a SLAG, and can globally be embedded in CICYs in weighted projective spaces. The local model depends on the choice of a discrete torsion in the fibration, and the global model on an anti-holomorphic involution of the Calabi-Yau hypersurface. We determine how these choices are related to each other by computing a Wilson surface detecting discrete torsion. We then follow the same orbifolds to the non-geometric Landau-Ginzburg region of moduli space. We argue that the symmetry-breaking twisted sectors are effectively captured by real Landau-Ginzburg potentials. In particular, we find agreement in the low-energy spectra of strings computed from geometry and Gepner-model CFT. Along the way, we construct the full modular data of orbifolds of N=2 minimal models by the mirror automorphism, and give a real-LG interpretation of their modular invariants. Some of the models provide examples of the mirror-symmetry phenomenon for G_2 holonomy.

Keywords

Cite

@article{arxiv.hep-th/0203272,
  title  = {Discrete Torsion in Singular G_2-Manifolds and Real LG},
  author = {Radu Roiban and Christian Romelsberger and Johannes Walcher},
  journal= {arXiv preprint arXiv:hep-th/0203272},
  year   = {2007}
}

Comments

71 pages, 4 figures, refs added, signs fixed