English

Regarding the Radion in Randall-Sundrum Models with Brane Curvature

High Energy Physics - Phenomenology 2016-09-28 v1

Abstract

In Randall-Sundrum models, one typically expects the radion to be the lightest new "gravity" state, as it is dual to a composite pseudo-Goldstone boson associated with conformal symmetry breaking in the IR. Here, we investigate the effects of localized brane curvature on the properties of the radion in Goldberger-Wise stabilized Randall-Sundrum models. We point out that both the radion mass and coupling to brane matter are sensitive to the brane curvature. Radion/Higgs kinetic mixing, via an IR-localized non-minimal coupling to the Higgs, is also investigated, in relation to the ghost-like radion that can occur for O(10)\mathcal{O}(10) values of the IR curvature (as required to significantly suppress the first Kaluza-Klein graviton mass). We also discuss a class of speculative IR localized terms involving the radion. Basic comments regarding the dual 4D theory are offered.

Keywords

Cite

@article{arxiv.1605.03087,
  title  = {Regarding the Radion in Randall-Sundrum Models with Brane Curvature},
  author = {Barry M. Dillon and Damien P. George and Kristian L. McDonald},
  journal= {arXiv preprint arXiv:1605.03087},
  year   = {2016}
}

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24 pages