Higher rank antisymmetric tensor fields in Klebanov-Strassler geometry
arXiv:1512.01381 · doi:10.1103/PhysRevD.93.105012
Abstract
In string theory, higher rank antisymmetric tensor fields appear as massless excitations of closed strings. Till date there is no experimental support in favour of their existence. In a stringy framework, starting from a warped throat-like Klebanov-Strassler geometry, we show that all the massless higher rank antisymmetric tensor fields are heavily suppressed due to the background fluxes leading to their invisibility in our Universe.
4 pages
References in corpus (11)
- Flux Compactification
- Constraints on Torsion from Lorentz Violation
- General inflaton potentials in supergravity
- A Microscopic Limit on Gravitational Waves from D-brane Inflation
- New CP-violation and preferred-frame tests with polarized electrons
- Comparing Brane Inflation to WMAP
- Holographic Systematics of D-brane Inflation
- Rapid roll Inflation with Conformal Coupling
- Observing the Geometry of Warped Compactification via Cosmic Inflation
- Bulk antisymmetric tensor fields in a Randall-Sundrum model
- Soft supersymmetry breaking with tiny cosmological constant in flux compactified N=1 Supergravity