Three-Generation Super No-Scale Models in Heterotic Superstrings
arXiv:2206.09732 · doi:10.1016/j.physletb.2022.137311
Abstract
We derive the conditions for the one-loop contribution to the cosmological constant to be exponentially suppressed in a class of heterotic string compactifications with three generations of chiral matter, where supersymmetry is spontaneously broken à la Scherk-Schwarz. Using techniques of partial unfolding based on the Hecke congruence subgroup of the modular group to extract the leading asymptotics, we show that the super no-scale condition between the degeneracies of massless bosons and fermions in the full string spectrum is necessary but not sufficient, and needs to be supplemented by additional conditions which we identify. We use these results to construct three-generation Pati-Salam models with interesting phenomenological characteristics.
17 pages, 2 figures
References in corpus (11)
- Towards a Non-Supersymmetric String Phenomenology
- Chiral family classification of fermionic Z2xZ2 heterotic orbifold models
- Classification of Heterotic Pati-Salam Models
- Chiral Heterotic Strings with Positive Cosmological Constant
- Super no-scale models in string theory
- Resolution of Hagedorn singularity in superstrings with gravito-magnetic fluxes
- Stability, enhanced gauge symmetry and suppressed cosmological constant in 9D heterotic interpolating models
- Classification of Non-Supersymmetric Pati-Salam Heterotic String Models
- On the stability of open-string orbifold models with broken supersymmetry
- Marginal deformations of heterotic interpolating models and exponential suppression of the cosmological constant
- Super No-Scale Models with Pati-Salam Gauge Group