Long-lived Colored Scalars at the LHC
Abstract
We study the collider signatures of a long-lived massive colored scalar transforming trivially under the weak interaction and decaying within the inner sections of a detector such as ATLAS or CMS. In our study, we assume that the colored scalar couples at tree-level to a top quark and a stable fermion, possibly arising from a dark sector or from supersymmetric extensions of the Standard Model. After implementing the latest experimental searches for long-lived colored scalars, we observe a region of parameter space consistent with a colored electroweak-singlet scalar with mass between GeV and a lifetime between together, with a nearly degenerate dark fermion that may be probed at the TeV LHC. We show that a search strategy using a combination of cuts on missing transverse energy and impact parameters can exclude regions of parameter space not accessed by prompt searches. We show that a region of parameter space within our simplified model may naturally arise from the light-stop window regime of supersymmetric extensions of the Standard Model, where a light mostly right-handed stop has a mass slightly larger than the lightest neutralino and decays through a four-body process.
Cite
@article{arxiv.1504.07293,
title = {Long-lived Colored Scalars at the LHC},
author = {Alejandro de la Puente and Alejandro Szynkman},
journal= {arXiv preprint arXiv:1504.07293},
year = {2016}
}