Interplay between Vector-like Lepton and Seesaw Mechanism:Oblique Corrections
arXiv:2404.19502 · doi:10.1007/JHEP10(2024)091
Abstract
The non-vanishing neutrino mass strongly hints the existence of right-handed neutrinos (RHNs), singlets of the standard model (SM). However, they are highly decoupled from the SM and difficult to probe. In this work, we consider the Majorana RHNs from the type-I seesaw mechanism may well mix with the heavy neutral lepton dwelling in certain vector-like lepton (VLL), thus acquiring a sizable electroweak charge. Such a simple scenario yields many interesting consequences, and the imprint on oblique corrections, well expected from the mass splitting between components of VLL by virtue of VLL-RHN mixing, is our focus here. We analytically calculate the Peskin-Takeuchi parameters S, T and U with full details, carefully treating the Majorana loop to obtain the self consistent expressions free of divergence. Then, we constrain on the VLL-RHN system which only gives a sizable parameter using the PDG-2021 data and CDF-II data, separately, by imposing . It is found that for the RHN and VLL below the TeV scale, with a properly large mixing, stands in the frontier of the electroweak precision test such as W-boson mass.
23 pages, 5 figures,
References in corpus (13)
- Survey of vector-like fermion extensions of the Standard Model and their phenomenological implications
- Measurement of the W boson mass
- Global analysis of electroweak data in the Standard Model
- Long-lived TeV-scale right-handed neutrino production at the LHC in gauged model
- Electroweak Precision Constraints on Vector-like Fermions
- Interpreting the -mass anomaly in the vectorlike quark models
- Testing leptogenesis at the LHC and future muon colliders: a scenario
- Electroweak dark matter model accounting for the CDF -mass anomaly
- Heavy Majorana neutrino pair production from at hadron and lepton colliders
- Versus Flavor Changing Neutral Current Induced by the Light Boson
- Probing the Nature of Neutrinos with a New Force
- The Low-Scale Seesaw Solution to the and Anomalies
- Versus Induced by the Boson