Geometry of Large Extra Dimensions versus Graviton Emission
arXiv:hep-ph/0104273 · doi:10.1103/PhysRevD.64.045016
Abstract
We study how the geometry of the large extra dimensions may affect field theory results on a three-brane. More specifically, we compare cross sections for graviton emission from a brane when the internal space is a N-torus and a N-sphere for N=2 to 6. The method we present can be used for other smooth compact geometries. We find that the ability of high energy colliders to determine the geometry of the extra dimensions is limited but there is an enhancement when both the quantum gravity scale and N are large. Our field theory results are compared with the low energy corrections to the gravitational inverse square law due to large dimensions compactified on other spaces such as Calabi-Yau manifolds.
19 pages, 3 figures; references added, discussion improved. Version to appear in Phys. Rev. D
References in corpus (1)
Cited by in corpus (14)
- Towards a Naturally Small Cosmological Constant from Branes in 6D Supergravity
- Warped Brane Worlds in Six Dimensional Supergravity
- Consistency Conditions for Brane Worlds in Arbitrary Dimensions
- Anisotropic Modulus Stabilisation: Strings at LHC Scales with Micron-sized Extra Dimensions
- Eigenvalues and Eigenfunctions of the Scalar Laplace Operator on Calabi-Yau Manifolds
- On braneworld cosmologies from six dimensions, and absence thereof
- Cosmology of intersecting brane world models in Gauss-Bonnet gravity
- Phenomenology on a Slice of Spacetime
- Conservation equation on braneworlds in six dimensions
- Searches for hyperbolic extra dimensions at the LHC
- Can be gravitational waves markers for an extra-dimension?
- Signatures of Spherical Compactification at the LHC
- On Adler-Bell-Jackiw Anomaly in 3-brane Scenario
- The End of the Road for Bulk Fields in Warped Randall-Sundrum Braneworlds