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The study on the structure of exotic states χc1(3872)χ_{c 1}(3872) via beauty-hadron decays in pppp collisions at s=8TeV\sqrt{s}=8\,\mathrm{TeV}

Published 7 Mar 2023 in hep-ph and nucl-th | (2303.03696v1)

Abstract: A dynamically constrained phase-space coalescence (DCPC) model was introduced to study the exotic state χc1(3872)\chi_{c 1}(3872) yield for three possible structures: tetraquark state, nuclear-like state, and molecular state respectively, where the hadronic final states generated by the parton and hadron cascade model (PACIAE). The χc1(3872)\chi_{c 1}(3872)/ψ(2S)\psi (2S) cross-section ratio from beauty-hadron decays (non-prompt) based on the χc1(3872)\chi_{c 1}(3872) or ψ(2S)J/ψπ<sup>+π<sup>\psi (2S)\to J/\psi{\pi<sup>+}{\pi<sup>-} bound state in the decay chains as a function of charged-particle multiplicity and transverse momentum in pppp collisions at s=8TeV\sqrt{s}=8\,\mathrm{TeV} are calculated. A tetraquark state scenario from PACIAE+DCPC model shows better agreement with the LHCb and ATLAS measurements for the non-prompt χc1(3872)\chi_{c 1}(3872)/ψ(2S)\psi(2S) cross-section ratio distributions, indicating that the χc1(3872)\chi_{c 1}(3872) is more likely to be a compact tetraquark state.

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