Leptonic Scalars at the LHC
Abstract
We explore the collider prospects of neutrino non-standard interaction with a Standard Model (SM) gauge-singlet leptonic scalar carrying two units of lepton-number-charge. These leptonic scalars are forbidden from interacting with the SM fermions at the renormalizable level and, if one allows for higher-dimensional operators, couple predominantly to SM neutrinos. For masses at or below the electroweak scale, decays exclusively into neutrinos. Its characteristic production signature at hadron collider experiments like the LHC would be via the vector boson fusion process and leads to same-sign dileptons, two forward jets in opposite hemispheres, and missing transverse energy, i.e., (). Exploiting the final states of electrons and muons, we estimate, for the first time, the sensitivity of the LHC to these lepton-number-charged scalars. We show that the LHC sensitivity is largely complementary to that of low-energy precision measurements of the decays of charged leptons, charged mesons, , and the SM Higgs boson, as well as the neutrino beam experiments like MINOS, and searches for neutrino self-interactions at IceCube and in cosmological observations. For mass larger than roughly 10 GeV, our projected LHC sensitivity would surpass all existing bounds.
Cite
@article{arxiv.1910.01132,
title = {Leptonic Scalars at the LHC},
author = {André de Gouvêa and P. S. Bhupal Dev and Bhaskar Dutta and Tathagata Ghosh and Tao Han and Yongchao Zhang},
journal= {arXiv preprint arXiv:1910.01132},
year = {2020}
}
Comments
36 pages, 10 figures, 4 tables, some analysis and limits are updated or added, some UV-complete models are provided in the appendix, more references, version to appear in JHEP