English

Modular Invariance, Soft Breaking, $\mu$ and $\tan\beta$ in Superstring Models

High Energy Physics - Phenomenology 2009-11-07 v2 High Energy Physics - Theory

Abstract

We go beyond parameterizations of soft terms in superstring models and investigate the dynamical assumptions that lead to the relative strength of the dilaton {\it vs} the moduli contributions in the soft breaking. Specifically, we discuss in some simple heterotic orbifold models sufficient conditions to achieve dilaton dominance. Assuming self-dual points to be minima we find multiple solutions to the trilinear and bilinear soft parameters A0A_0 and B0B_0. We discuss the constraints on μ\mu and tanβ\tan\beta in superstring models in the context of radiative breaking of the electroweak symmetry. We show that string models prefer a small to a moderate value of tanβ\tan\beta, {\it i.e}. tanβ10\tan\beta \leq 10, and a value much larger than this requires a high degree of fine tuning. Further, we show that for large tanβ\tan\beta the radiative electroweak symmetry breaking constraint leads to a value αstring=gstring2/4π\alpha_{string}=g_{string}^2/4\pi which is typically an order of magnitude smaller than implied by the LEP data and the heterotic superstring relation gstring=kigig_{string}=k_ig_i, where gig_i is the gauge coupling constant for the gauge group GiG_i and kik_i is the corresponding Kac-Moody level in the class of models considered. This situation can be overcome by another fine tuned cancellation between the dilaton and the moduli contributions in the soft parameters.

Keywords

Cite

@article{arxiv.hep-ph/0209282,
  title  = {Modular Invariance, Soft Breaking, $\mu$ and $\tan\beta$ in Superstring Models},
  author = {Pran Nath and Tomasz R. Taylor},
  journal= {arXiv preprint arXiv:hep-ph/0209282},
  year   = {2009}
}

Comments

15 pages, Latex, including 3 figures. Revised version. Accepted for publication in Physics Letters B