English

Lepton collider probes for Majorana neutrino effective interactions

High Energy Physics - Phenomenology 2022-07-06 v3

Abstract

The extension of the standard model with new high-scale weakly coupled physics involving right-handed neutrinos in an effective field theory framework (SMNEFT) allows for a systematic study of heavy neutrinos phenomenology in current and future experiments. We exploit the outstanding angular resolution in future lepton colliders to study the sensitivity of forward-backward asymmetries to discover the possible single production of heavy Majorana neutrinos via e+eNνe^{+}e^{-} \to N \nu, followed by a purely leptonic decay Nμμ+νN \to \mu^{-} \mu^{+} \nu or a semi-leptonic decay NμjjN \to \mu^{-} \mathrm{j} \mathrm{j} , for masses mN>50m_N > 50 GeV. In this regime, we consider the NN production and decays to be dominated by scalar and vectorial four-fermion d=6d=6 single NRN_R operators. This is an alternative analysis to searches using displaced vertices and fat jets, in a higher mass regime, where the NN is short-lived but can be found by the angular distribution of its decay products. We find that a forward-backward asymmetry between the final muons in the pure leptonic decay mode provides a sensitivity up to 12σ\sigma for mN=100m_N=100 GeV, for effective couplings α=0.2\alpha=0.2 and new physics scale Λ=1\Lambda=1 TeV. In the case of the semi-leptonic decay, we can compare the final muon and higher pTp_T jet flight directions, again finding up to 12σ\sigma sensitivity to the effective signals.

Keywords

Cite

@article{arxiv.2201.02480,
  title  = {Lepton collider probes for Majorana neutrino effective interactions},
  author = {Gabriel Zapata and Tomás Urruzola and Oscar A. Sampayo and Lucía Duarte},
  journal= {arXiv preprint arXiv:2201.02480},
  year   = {2022}
}

Comments

25 pages, 12 figures, 3 tables. v3 References updated, new organization and plots

R2 v1 2026-06-24T08:42:52.847Z