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Brane Induced Gravity: From a No–Go to a No–Ghost Theorem

Felix Berkhahn, Stefan Hofmann, Florian Niedermann

Keywords

brane induced gravity, ghost

Abstract

Numerous claims in the literature suggest that gravity induced on a higher co-dimensional surface violates unitarity in the weak coupling regime. However, it remained unclear, why a conserved source localized on this surface and giving rise to an induced gravity term at low energies would absorb and emit the associated ghost, given a consistent source-free theory. In this article it is shown that the appearance of the induced Einstein Hilbert term does not threaten the unitarity of the theory. The physics arguments behind this statement are presented in a semi-covariant language, but the detailed proof is given using Dirac_s14s constraint analysis. It is shown that the would-be ghost highlighted in previous works is non-dynamical and therefore not associated with a state in the Hilbert space. As a result of these investigations, brane induced gravity goes without a ghost, opening an exciting window of opportunity for consistent deformations of gravity at the largest observable distances.

Information

Published
2012 as article (english)
PRD, - page(s): 13
Type
theoretical work
Links
pdf
Related to the research area(s):
A
e-Print
1205.6801

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