Seeking for sterile neutrinos with displaced leptons at the LHC
arXiv:1904.01020 · doi:10.1007/JHEP07(2019)159
Abstract
We study the signal of long-lived sterile neutrino at the LHC produced through the decay of the boson. It decays into charged lepton and jets. The characteristic signature is a hard prompt lepton and a lepton from the displaced decay of the sterile neutrino, which leads to a bundle of displaced tracks with large transverse impact parameter. Different from other studies, we neither reconstruct the displaced vertex nor place requirement on its invariant mass to maintain sensitivity for low sterile neutrino masses. Instead, we focus on the displaced track from the lepton. A difficulty for low mass sterile neutrino study is that the displaced lepton is usually \textit{non-isolated}. Therefore, leptons from heavy flavor quark is the major source of background. We closely follow a search for displaced electron plus muon search at CMS and study their control regions, which is related to our signal regions, in great detail to develop a robust estimation of the background for our signals. After further optimization on the signal limiting the number of jets, low and large lepton displacement to suppress SM background, we reach an exclusion sensitivity of about () for the mixing angle square at 10 (2) GeV sterile neutrino mass respectively. The strategy we propose can cover the light sterile masses complimentary to beam dump and forward detector experiments.
22 pages, 6 figures, 1 table; v2: matched to Journal version;
References in corpus (7)
- PYTHIA 6.4 Physics and Manual
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- Signatures for Majorana neutrinos at hadron colliders
- Heavy neutrino signals at large hadron colliders
- Heavy Majorana Neutrinos from Fusion at Hadron Colliders
- Sterile neutrino searches via displaced vertices at LHCb
- Sterile Neutrinos or Flux Uncertainties? - Status of the Reactor Anti-Neutrino Anomaly
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