WIMP Dark Matter through the Dilaton Portal
Abstract
We study a model in which dark matter couples to the Standard Model through a dilaton of a sector with spontaneously broken approximate scale invariance. Scale invariance fixes the dilaton couplings to the Standard Model and dark matter fields, leaving three main free parameters: the symmetry breaking scale , the dilaton mass , and the dark matter mass . We analyze the experimental constraints on the parameter space from collider, direct and indirect detection experiments including the effect of Sommerfeld enhancement, and show that dilaton exchange provides a consistent, calculable framework for cold dark matter with of roughly similar magnitude and in the range TeV. Direct and indirect detection experiments, notably future ground-based gamma ray and space-based cosmic ray measurements, can probe the model all the way to dark matter mass in the multi-TeV regime.
Cite
@article{arxiv.1410.1873,
title = {WIMP Dark Matter through the Dilaton Portal},
author = {Kfir Blum and Mathieu Cliche and Csaba Csaki and Seung J. Lee},
journal= {arXiv preprint arXiv:1410.1873},
year = {2014}
}
Comments
28 pages, LaTeX; v2: section 4 corrected