Extra Neutral Scalars with Vector-like Fermions at the LHC
Abstract
Many theories beyond the standard model (BSM) contain new CP-odd and CP-even neutral scalars , and new vector-like fermions (). The couplings of the CP-odd scalar to two standard model (SM) gauge bosons cannot occur from renormalizable operators in a CP-conserving sector, but can be induced at the quantum loop level. We compute these effective couplings at the 1-loop level induced by the SM fermions and vector-like fermions, present analytical expressions for them, and plot them numerically. Using the 8~TeV Large Hadron Collider (LHC) , and channel data, we derive constraints on the effective couplings of the to standard model gauge bosons and fermions. We present the gluon-fusion channel cross-sections of the at the 8~and~14~TeV LHC, and its branching-ratios into SM fermion and gauge-boson pairs. We present our results first model-independently, and then also for some simple models containing and in the singlet and doublet representations of . In the doublet case, we focus on the two-Higgs-doublet (2HDM) Type-II and Type-X models in the alignment limit.
Cite
@article{arxiv.1504.01074,
title = {Extra Neutral Scalars with Vector-like Fermions at the LHC},
author = {Shrihari Gopalakrishna and Tuhin Subhra Mukherjee and Soumya Sadhukhan},
journal= {arXiv preprint arXiv:1504.01074},
year = {2016}
}
Comments
29 pages, 31 figures; v2: both CP-even and CP-odd scalars included, sections reorganized to improve readability, tan\beta\ convention changed, new references added