Localization of Matter Fields in the 5D Standing Wave Braneworld
arXiv:1204.2448 · doi:10.1007/JHEP09(2012)056
Abstract
We investigate the localization problem of matter fields within the 5D standing wave braneworld. In this model the brane emits anisotropic waves into the bulk with different amplitudes along different spatial dimensions. We show that in the case of increasing warp factor there exist the pure gravitational localization of all kinds of quantum and classical particles on the brane. For classical particles the anisotropy of the background metric is hidden, brane fields exhibit standard Lorentz symmetry in spite of anisotropic nature of the primordial 5D metric.
The version accepted by JHEP
References in corpus (3)
Cited by in corpus (12)
- q-Form fields on p-branes
- Thick Brane Isotropization in a Generalized 5D Anisotropic Standing Wave Braneworld Model
- Hybrid metric-Palatini brane system
- A 6D standing-wave Braneworld with normal matter as source
- The 5D Standing Wave Braneworld With Real Scalar Field
- Gauge Fields in the 5D Gravity-Scalar Standing Wave Braneworld
- Fermions in the 5D Gravity-Scalar Standing Wave Braneworld
- New Class of N-dimensional Braneworlds
- Torsion braneworlds in a tensor-vector gravity
- Standing Waves Braneworlds
- A 6D standing wave Braneworld
- Hierarchy of Fermion Masses in the 5D Standing Wave Braneworld