We provide a method to decompose the two-point function of a quantum field on a warped manifold in terms of fields living on a lower-dimensional manifold. We discuss explicit applications to Minkowski, de Sitter and anti-de Sitter quantum field theories. This decomposition presents a remarkable analogy with the holography principle, in the sense that physics in d+1 dimensions may be encoded into the physics in one dimension less. Moreover, in a context à la Randall–Sundrum, the method outlined here allows a mechanism of generation of mass-spectra in the 3-brane (or more generally, a (d−1)-brane).
Decomposing quantum fields on branes / Bertola, M.; Bros, J.; Gorini, V.; Moschella, U.; Schaeffer, R.. - In: NUCLEAR PHYSICS. B. - ISSN 0550-3213. - 581:1-2(2000), pp. 575-603. [10.1016/S0550-3213(00)00280-7]
Decomposing quantum fields on branes
Bertola, M.;
2000-01-01
Abstract
We provide a method to decompose the two-point function of a quantum field on a warped manifold in terms of fields living on a lower-dimensional manifold. We discuss explicit applications to Minkowski, de Sitter and anti-de Sitter quantum field theories. This decomposition presents a remarkable analogy with the holography principle, in the sense that physics in d+1 dimensions may be encoded into the physics in one dimension less. Moreover, in a context à la Randall–Sundrum, the method outlined here allows a mechanism of generation of mass-spectra in the 3-brane (or more generally, a (d−1)-brane).File | Dimensione | Formato | |
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