Gamma rays from the Galactic bulge and large extra dimensions
Abstract
An intriguing feature of extra dimensions is the possible production of Kaluza--Klein gravitons by nucleon-nucleon bremsstrahlung in the course of core collapse of massive stars, as pointed out by Hannestad and Raffelt. In this event Kaluza--Klein gravitons are copiously produced and a significant fraction of them remains trapped around the newly born neutron stars. They slowly decay into 2 gamma rays, making neutron stars gamma-ray sources. In this letter, we strengthen considerably the limits on the radius of compactification of extra-dimensions for small number of them, or alternatively the fundamental scale of quantum gravity, considering the gamma-ray emission of the whole population of neutron stars sitting in the Galactic bulge, instead of the closest member of this category. For the constraint on the compactification radius is m, overlapping with the distance (m) at which Newtons law is directly measured. In addition, for n=1 and n=2, the fundamental energy scale of quantum gravity is far beyond the collider technology. These results imply that if and if strong gravity is around a TeV, the compactification topology is to be more complex than that of a torus.
Keywords
Cite
@article{arxiv.hep-ph/0309173,
title = {Gamma rays from the Galactic bulge and large extra dimensions},
author = {Michel Casse and Jacques Paul and Gianfranco Bertone and Guenter Sigl},
journal= {arXiv preprint arXiv:hep-ph/0309173},
year = {2008}
}
Comments
4 pages, minor changes to text, matches published version