Vacuum Energy of Non-Supersymmetric $\mathbf{\tilde{S}}$ Heterotic String Models
Abstract
We use the free fermionic formulation of the heterotic-string in four dimensions to study the vacuum structure and energy of non-supersymmetric tachyon free models that correspond to compactifications of tachyonic vacua of the ten dimensional heterotic-string. We explore the class of heterotic non-supersymmetric models constructed from the -model in the Free Fermionic Formalism, and investigate the dependence of the potential on the geometric moduli. This paper will explore a sample of string vacua to find the frequency of viable models, classifying these vacua by the following fertility criteria: tachyon presence; number of spinorial representations; vectorial states; Top Quark Mass Coupling compatibility. Of these we find those that mimic supersymmetric models with equal number of bosons and fermions at the massless level - . Tachyon free models occur with a frequency of . Furthermore, models that fulfil the rest of the phenomenological fertility conditions and the additional condition on occur with probability We analyse the partition functions and study the moduli dependence of such models, finding that almost all fertile models have finite, positive potential at the Free Fermionic Point, with out of of the fertile cores having negative, finite potential. We demonstratate that the Free Fermionic Point is not necessarily a minimum in the potential. This work provides further evidence that supersymmetry may not be a necessary ingredient of phenomenological models, recreating many of the desirable features of such models without employing supersymmetry.
Keywords
Cite
@article{arxiv.2407.19980,
title = {Vacuum Energy of Non-Supersymmetric $\mathbf{\tilde{S}}$ Heterotic String Models},
author = {Luke A. Detraux and Alonzo R. Diaz Avalos and Alon E. Faraggi and Benjamin Percival},
journal= {arXiv preprint arXiv:2407.19980},
year = {2024}
}
Comments
24 pages, 3 figures