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July 26, 20260 citationsOpen Access

Search for single production of a vector-like T quark decaying to a top quark and a neutral scalar boson in the lepton+jets final state in proton-proton collisions at s=13 TeV

CCC Sturm for the KaoS CollaborationAHA. HayrapetyanVMV Makarenko

Key Points

  • The study aims to search for the single production of a vector-like T quark decaying into a top quark and a neutral scalar boson.
  • The analysis utilized data from the CMS experiment at the CERN LHC, with a center-of-mass energy of 13 TeV.
  • Machine learning techniques were applied for event classification in the lepton+jets decay topology.
  • Upper limits on the product of cross section and branching fraction for T quark production were set using a narrow-width approximation.
  • Upper limits ranged from 14.7 to 0.1 fb for T quark masses between 1.3 and 3.0 TeV.
  • For the decay into a standard model Higgs boson, the study provided the best limits on production cross sections for T quark masses above 2 TeV.
  • These results represent the first exclusion limits for single T quark decaying into a top quark and a new neutral scalar boson.

Abstract

A search for single production of a vector-like T quark with charge 2e/3, decaying to a top quark and a neutral scalar boson is presented. The boson can be a standard model Higgs boson (H) or a new scalar boson (ϕ). In the first case, a branching fraction of 25% is assumed for the decay T → tH, while in the second case the T quark is assumed to decay exclusively to tϕ. The top quark is identified via its lepton+jets decay, and the neutral boson via its decay into a bottom quark-antiquark pair. Final states with Lorentz-boosted topologies are considered and machine-learning techniques are exploited for optimal event classification. The analysis uses data collected by the CMS experiment in proton-proton collisions at a center-of-mass energy of 13 TeV, corresponding to an integrated luminosity of 138 fb^−1 recorded at the CERN LHC in 2016–2018. Upper limits at 95% confidence level are set on the product of cross section and branching fraction for a T quark in a narrow-width approximation. They vary between 14. 7 and 0. 1 fb, for T quark masses in the range 1. 3–3. 0 TeV and ϕ boson masses in the range 25–250 GeV. These are the first exclusion limits set on the production of a single T quark decaying into a top quark and a new neutral scalar boson. For the decay channel into a top quark and a standard model Higgs boson, the results provide the best limits on production cross sections to date, for T quark masses above 2 TeV.

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Cite This Study

Collaboration et al. (2026) studied this question.

synapsesocial.com/papers/6a65a890d3aea3239cd78e00https://doi.org/10.5445/ir/1000195543
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