Leakage of gravitational waves into an extra dimension in the DGP model
arXiv:2209.04262 · doi:10.1088/1475-7516/2022/10/062
Abstract
In the DGP model, the graviton is unstable, which leads to a modification of gravity at cosmological distances. In particular, this leads to the leakage of gravitational waves from the brane into an extra dimension at large distances from the source. However, the calculation of the gravitational wave leakage intensity is a non-trivial task due to the violation of the Huygens principle in the five-dimensional bulk of the DGP setup. The odd dimension of the bulk makes it difficult to extract the radiated part of the field. In this paper, we consider a simplified problem of scalar radiation from a point charge localized on a brane in the framework of the scalar field analog of the DGP model. In this model, the scalar field on the brane can be represented as a continuous spectrum of Kaluza-Klein massive modes. To extract the emitted part of such a field, we generalize the Rohrlich-Teitelboim approach to radiation to the case of a massive four-dimensional field, using its connections to massless fields in four and five dimensions. In the case of a charge moving along a circular trajectory, we obtain the dependence of the radiation energy flux through a 2-sphere localized on the brane on the sphere radius, which provides the intensity of leakage of scalar radiation from the brane. Consistent with the infrared transparency of the bulk, the leakage intensity is found to be higher for low frequency signals. We are also analyzing the possibility of detecting this leak by current and future gravitational-wave observatories.
37 pages, 4 figures
References in corpus (22)
- Gravitational-wave sensitivity curves
- DGP Specteroscopy
- Constraining the tidal charge of brane black holes using their shadows
- Gravitational waves and higher dimensions: Love numbers and Kaluza-Klein excitations
- Hunting extra dimensions in the shadow of Sgr A*
- Constraining extra dimensions using observations of black hole quasi-normal modes
- Superluminality in DGP
- Gravitational radiation in d>4 from effective field theory
- Probing extra dimension through gravitational wave observations of compact binaries and their electromagnetic counterparts
- Constraining cosmological extra dimensions with gravitational wave standard sirens: from theory to current and future multi-messenger observations
- Radiation Beyond Four Space-Time Dimensions
- Gravitational Larmor formula in higher dimensions
- Electromagnetic radiation in even-dimensional spacetimes
- Gravitational radiation-reaction in arbitrary dimension
- Warp factor and the gravitational wave spectrum
- Is Strong Gravitational Radiation predicted by TeV-Gravity?
- Radiation reaction reexamined: bound momentum and Schott term
- Radiation reaction in 2+1 electrodynamics
- Gravitational radiation from a binary system in odd-dimensional spacetime
- Retarded potentials and radiation in odd dimensions
- Radiation reaction in curved even-dimensional spacetime
- Constraining the number of spacetime dimensions from GWTC-3 binary black hole mergers
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