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arXiv:2606.23187·v1·High Energy Physics — Phenomenology

Pair Production of Singlet Vector-Like B Quarks in Boosted bZ Final States at a Muon Collider

Eda Alici🇹🇷

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Abstract

We investigate the pair production of singlet vector-like bottom quarks at a future muon collider in the boosted final-state topology. The signal process is considered as , with one boson decaying leptonically and the other hadronically, leading to a final state with an opposite-sign same-flavour dilepton pair, multiple jets, and two -tagged jets. Signal and Standard Model background events are generated at leading order with MadGraph5\_\allowbreak aMC@NLO and subsequently interfaced with \textsc{Pythia}~8 for parton showering and hadronization. Detector effects are simulated with \textsc{Delphes} using a muon-collider detector configuration. A cut-based analysis exploiting boosted kinematics, including hard leading--jet transverse momentum, small dilepton angular separation, and large hadronic activity, is performed to suppress the dominant , , and backgrounds. Statistical sensitivities are evaluated with the Asimov approximation, including both zero and background systematic uncertainty scenarios. For the singlet benchmark and an integrated luminosity of , a discovery reach up to is obtained, reduced slightly to when systematic effects are included. These results demonstrate that a muon collider provides a powerful and clean environment for probing vector-like quarks well beyond present LHC limits.