English

N=2 Type II- Heterotic duality and Higher derivative F-terms

High Energy Physics - Theory 2017-01-18 v1

Abstract

We test the recently conjectured duality between N=2N=2 supersymmetric type II and heterotic string models by analysing a class of higher dimensional interactions in the respective low-energy Lagrangians. These are FF-terms of the form FgW2gF_g W^{2g} where WW is the gravitational superfield. On the type II side these terms are generated at the gg-loop level and in fact are given by topological partition functions of the twisted Calabi-Yau sigma model. We show that on the heterotic side these terms arise at the one-loop level. We study in detail a rank 3 example and show that the corresponding couplings FgF_g satisfy the same holomorphic anomaly equations as in the type II case. Moreover we study the leading singularities of FgF_g's on the heterotic side, near the enhanced symmetry point and show that they are universal poles of order 2g22g{-}2 with coefficients that are given by the Euler number of the moduli space of genus-gg Riemann surfaces. This confirms a recent conjecture that the physics near conifold singularity is governed by c=1c{=}1 string theory at the self-dual point.

Keywords

Cite

@article{arxiv.hep-th/9507115,
  title  = {N=2 Type II- Heterotic duality and Higher derivative F-terms},
  author = {I. Antoniadis and E. Gava and K. S. Narain and T. R. Taylor},
  journal= {arXiv preprint arXiv:hep-th/9507115},
  year   = {2017}
}

Comments

33 pages, latex, no figures