Supersymmetric Hidden Sectors for Heterotic Standard Models
arXiv:1301.6767 · doi:10.1007/JHEP09(2013)008
Abstract
Within the context of the weakly coupled E8 x E8 heterotic string, we study the hidden sector of heterotic standard model compactifications to four-dimensions. Specifically, we present a class of hidden sector vector bundles - composed of the direct sum of line bundles only - that, together with an effective bulk five-brane, renders the heterotic standard model entirely N=1 supersymmetric. Two explicit hidden sectors are constructed and analyzed in this context; one with the gauge group E7 x U(1) arising from a single line bundle and a second with an SO(12) x U(1) x U(1) gauge group constructed from the direct sum of two line bundles. Each hidden sector bundle is shown to satisfy all requisite physical constraints within a finite region of the Kahler cone. We also clarify that the first Chern class of the line bundles need not be even in our context, as has often been imposed in the model building literature.
32 pages, 4 figures. v2: corrected misplaced hyphen in the second author's name. v3: citations and clarifications added
References in corpus (6)
- Heterotic Line Bundle Standard Models
- Heterotic GUT and Standard Model Vacua from simply connected Calabi-Yau Manifolds
- Two Hundred Heterotic Standard Models on Smooth Calabi-Yau Threefolds
- Stability Walls in Heterotic Theories
- Stabilizing Moduli with a Positive Cosmological Constant in Heterotic M-Theory
- Stability of the Minimal Heterotic Standard Model Bundle
Cited by in corpus (10)
- Bouncing Cosmologies: Progress and Problems
- A Critical Review of Classical Bouncing Cosmologies
- Dark Matter Production Mechanisms with a Non-Thermal Cosmological History - A Classification
- A Statistical Analysis of the Minimal SUSY B-L Theory
- -parity Violating Decays of Bino Neutralino LSPs at the LHC
- Wilson lines and Chern-Simons flux in explicit heterotic Calabi-Yau compactifications
- Line Bundle Hidden Sectors for Strongly Coupled Heterotic Standard Models
- Explicit Soft Supersymmetry Breaking in the Heterotic M-Theory MSSM
- Supergravitational Heterotic Galileons
- Hidden Sectors from Multiple Line Bundles for the MSSM