Exploring maverick top partner decays at the LHC
Shivam Verma, Sanjoy Biswas, Anirban Chatterjee, Joy Ganguly

TL;DR
This paper investigates a maverick top partner model with suppressed traditional decay modes, focusing on its unique decay to dark photons and the resulting missing energy signatures at the LHC, exploring detection prospects at high energies.
Contribution
It introduces a novel top partner model with suppressed standard decays and dominant decays to dark sector particles, analyzing its LHC signatures and exclusion limits.
Findings
Top partner predominantly decays to top quark and dark photon/dark Higgs.
LHC can exclude mixing angle sinθ_L ~ 0.025-0.05 for masses up to 2.6 TeV.
Signatures include t-tbar plus missing energy at 13 and 14 TeV.
Abstract
In this work, we have considered an extension of the standard model (SM) with a singlet vectorlike quark (VLQ) with electric charge . The model also contains an additional local symmetry group and the corresponding gauge boson is the dark photon. The VLQ is charged while all the SM particles are neutral under the new gauge group. Even though in this model the VLQ possesses many properties qualitatively similar to that of the traditional top partner (), there are some compelling differences as well. In particular, its branching ratio to the traditional modes () are suppressed which in turn helps to evade many of the existing bound, mainly coming from the LHC experiments. In an earlier work, such a VLQ is referred to as ``maverick top partner". It has been shown that the top partner in this model predominantly decays to a top…
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Taxonomy
TopicsParticle physics theoretical and experimental studies · Superconducting Materials and Applications · Particle Accelerators and Free-Electron Lasers
