Direct constraints on the agnostic νSMEFT from heavy-neutrino searches at the LHC
Luc\'ıa Duarte, Agust\'ın Guillenea
Abstract
The observation of neutrino oscillations and masses motivates extensions of the Standard Model containing right-handed neutrinos. If additional new physics exists at scales beyond the direct reach of present experiments, its effects can be systematically described within the neutrino Standard Model Effective Field Theory (νSMEFT). In this framework, heavy neutral leptons provide a promising target for collider searches. In this work, we reinterpret a CMS search for heavy Majorana neutrinos in the same-sign dimuon plus two jets final state to constrain the parameter space of the dimension-six νSMEFT. Using a detailed recast of the experimental analysis, we present results for both a pure-agnostic benchmark and a benchmark incorporating neutrinoless double-beta-decay bounds. For heavy-neutrino masses in the range 200~GeV mN 15~TeV, the observed upper limits on the effective coupling strength range from 5.8×10-7\,GeV-2 to 2.3×10-6\,GeV-2. These results constitute the first experimental exclusion limits on the agnostic νSMEFT parameter space obtained from a dedicated recast of an LHC heavy-neutrino search.
Create a lesson
Related papers
Cosmological stasis and the coupled dark sector of the Dark Dimension
Alexander Stewart
Fast Surrogate for the Earth Matter Effect on Solar Neutrinos
Saeed Ansarifard
A Unitary Fixed Point Away from Threshold: Momentum-Surface EFT for Strong Mixing
Lorenzo De Ros, Javier Reig Navarro
Limitations of quantum tomography in Higgs-boson decays to four leptons
Morgan Del Gratta, Fabio Maltoni, Davide Pagani et al.
Bin-to-bin correlations in the extraction of proton's transverse structure
Laurent Favart, Francesco Hautmann, Aleksandra Lelek et al.
Cosmic Birefringence and Axiogenesis
Raymond T. Co, Lawrence J. Hall, Keisuke Harigaya et al.