Sensitivity to Single Vector-Like Bottom Quark Production at 3 TeV CLIC
R. Benbrik, M. Berrouj, M. Boukidi, M. Ech-chaouy, K. Kahime, K. Salime
Abstract
We study the sensitivity of the Compact Linear Collider at s=3~TeV to the single electroweak production of a vector-like bottom quark in a type-II Two-Higgs-Doublet Model extended by vector-like quarks. We consider the process e+e- B b+ B b, followed by Bϕb with ϕ=H,A and ϕ t t. We focus on the semileptonic final state with one charged lepton, missing transverse momentum, four b-tagged jets, and two light jets. This channel directly probes the interplay between the extended quark and Higgs sectors. After applying theoretical constraints, electroweak precision constraints, Higgs-sector bounds, and current collider limits, we perform detector-level cut-based and multivariate analyses. The cut-based analysis remains below discovery sensitivity at 5~ab-1, while a multilayer perceptron and an XGBoost classifier provide substantially improved signal-background separation. For viable scenarios with mB1.3--1.5~TeV, the expected significance remains above 5σ even for a 15\% uncertainty on the background normalization.
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