arXiv · hep-th/0204122
Singular Quantum Mechanical Viewpoint of Localized Gravity in Brane-World Scenario
Abstract
The graviton localized on the 3-brane is examined in Randall-Sundrum brane-world scenario from the viewpoint of one-dimensional singular quantum mechanics. For the Randall-Sundrum single brane scenario the one-parameter family of the fixed-energy amplitude is explicitly computed where the free parameter $ξ$ parametrizes the various boundary conditions at the brane. The general criterion for the localized graviton to be massless is derived when $ξ$ is arbitrary but non-zero. When $ξ=0$, the massless graviton is obtained via a coupling constant renormalization. For the two branes picture the fixed-energy amplitude is in general dependent on the two free parameters. The numerical test indicates that there is no massless graviton in this picture. For the positive-tension brane, however, the localized graviton becomes massless when the distance between branes are infinitely large, which is essentially identical to the single brane picture. For the negative-tension brane there is no massless graviton regardless of the distance between branes and choice of boundary conditions.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
D. K. Park, Hungsoo Kim. 2002-05-27. Singular Quantum Mechanical Viewpoint of Localized Gravity in Brane-World Scenario. https://doi.org/10.1016/s0550-3213(02)00420-0
Cite the original work for its findings. Save a collection to share your selection of sources.