Discovering walking technirho mesons at the LHC
Abstract
We formulate a scale-invariant hidden local symmetry (HLS) as a low-energy effective theory of walking technicolor (WTC) which includes the technidilaton, technipions, and technirho mesons as the low-lying spectra. As a benchmark for LHC phenomenology, we in particular focus on the one-family model of WTC having eight technifermion flavors, which can be, at energy scales relevant to the reach of the LHC, described by the scale-invariant HLS based on the manifold , where is the HLS and the global symmetry is partially gauged by of the standard model. Based on the scale-invariant HLS, we evaluate the coupling properties of the technirho mesons and place limits on the masses from the current LHC data. Then, implications for future LHC phenomenology are discussed by focusing on the technirho mesons produced through the Drell-Yan process. We find that the color-octet technirho decaying to the technidilaton along with the gluon is of interest as the discovery channel at the LHC, which would provide a characteristic signature to probe the one-family WTC.
Keywords
Cite
@article{arxiv.1404.3048,
title = {Discovering walking technirho mesons at the LHC},
author = {Masafumi Kurachi and Shinya Matsuzaki and Koichi Yamawaki},
journal= {arXiv preprint arXiv:1404.3048},
year = {2014}
}
Comments
19 pages, 19 eps figures; (v2) a version to be published