Multi-Lepton Signals of Multiple Higgs Bosons
Abstract
We identify and investigate novel multi-lepton signatures of extended Higgs sectors at the LHC in the guise of CP- and flavor-conserving two-Higgs-doublet models (2HDMs). Rather than designing individual searches tailored to specific 2HDM signals, we employ the combination of many exclusive multi-lepton search channels to probe the collective signal from the totality of production and decay processes. Multi-lepton signals of 2HDMs can arise from a variety of sources, including Standard Model-like production of the CP-even scalars, and , through gluon-fusion with , or associated production with vector bosons or top quarks, with . Additional sources include gluon-fusion production of the heavy CP-even scalar with decays through the light CP-even scalar, the CP-odd scalar, , or the charged scalar, , such as , , , , with , , and . Altogether, the combined multi-lepton signal may greatly exceed that of the Standard Model Higgs boson and provides a sensitive probe of extended Higgs sectors. As a proof of principle, we use a factorized mapping procedure between model parameters and signatures to determine multi-lepton sensitivities in four different flavor conserving 2HDM parameter spaces by simulating the acceptance times efficiency in 20 exclusive multi-lepton channels for 222 independent production and decay topologies that arise for four benchmark 2HDM spectra within each parameter space. A comparison of these sensitivities with the results of a multi-lepton search conducted by the CMS collaboration using 5 fb of data collected from 7 TeV collisions yields new limits in regions of 2HDM parameter space that have not previously been covered by other types of direct experimental searches.
Cite
@article{arxiv.1210.0559,
title = {Multi-Lepton Signals of Multiple Higgs Bosons},
author = {Nathaniel Craig and Jared A. Evans and Richard Gray and Can Kilic and Michael Park and Sunil Somalwar and Scott Thomas},
journal= {arXiv preprint arXiv:1210.0559},
year = {2015}
}
Comments
39 pages, 11 tables, 11 figures