Resonant Di-Higgs Searches in bbτ+τ- at HL-LHC: Supersymmetry versus Compositeness Benchmarks
Atri Dey, Carl Johan Konigsson, Stefano Moretti, Luigi Delle Rose, Luca Panizzi, Stefania De Curtis
Abstract
We explore the scope of the High-Luminosity Large Hadron Collider (HL-LHC) in testing Standard Model (SM) di-Higgs production and decay into 2b2τ final states in the context of two viable theories of the Electro-Weak (EW) scale: Supersymmetry and Compositeness. Specifically, we target minimal model realisations of these two scenarios that enable the resonant process gg H hh bb τ+τ-, where h is the SM-like Higgs state and H a heavier CP-even companion, with the τ's decaying hadronically. This is realised within the Next-to-Minimal Supersymmetric SM and the Composite 2-Higgs Doublet Model, respectively. Using two illustrative benchmark points, after performing a thorough detector-level Monte Carlo (MC) analysis exploiting new observables, we show that, in the former case, there is more moderate sensitivity, owing to large backgrounds, whereas, in the latter case, substantial scope for discovery exists, in a background free environment.
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