Deriving the Inflaton in Compactified M-theory with a De Sitter Vacuum
arXiv:1902.02365 · doi:10.1103/PhysRevD.100.066005
Abstract
Compactifying M-theory on a manifold of holonomy gives a UV complete 4D theory. It is supersymmetric, with soft supersymmetry breaking via gaugino condensation that simultaneously stabilizes all moduli and generates a hierarchy between the Planck and the Fermi scale. It generically has gauge matter, chiral fermions, and several other important features of our world. Here we show that the theory also contains a successful inflaton, which is a linear combination of moduli closely aligned with the overall volume modulus of the compactified manifold. The scheme does not rely on ad hoc assumptions, but derives from an effective quantum theory of gravity. Inflation arises near an inflection point in the potential which can be deformed into a local minimum. This implies that a de Sitter vacuum can occur in the moduli potential even without uplifting. Generically present charged hidden sector matter generates a de Sitter vacuum as well.
26 pages, 9 figures
References in corpus (13)
- General inflaton potentials in supergravity
- De Sitter Vacua from Matter Superpotentials
- Non-thermal Dark Matter and the Moduli Problem in String Frameworks
- An M Theory Solution to the Strong CP Problem and Constraints on the Axiverse
- Locally stable non-supersymmetric Minkowski vacua in supergravity
- The -MSSM - An Theory motivated model of Particle Physics
- Explaining the Electroweak Scale and Stabilizing Moduli in M Theory
- Volume Modulus Inflation and the Gravitino Mass Problem
- Accidental Inflation in String Theory
- Challenges for Large-Field Inflation and Moduli Stabilization
- Mirage Pattern from the Heterotic String
- Volume modulus inflection point inflation and the gravitino mass problem
- Natural Inflation and Low Energy Supersymmetry