arXiv:2601.11986·v2·High Energy Physics — Phenomenology
Prospects for discovering strongly decaying doubly heavy tetraquark states at LHCb
Mingjie Feng🇨🇳 · Yiming Li🇨🇳 · Hua-Sheng Shao🇫🇷
Abstract
We investigate the discovery potential of the state with in proton-proton () collisions at LHCb at a center-of-mass energy of . The study focuses on the decay channel . A phenomenological approach is employed to construct the background model based on the associated production of and mesons, incorporating previously published LHCb results. Background processes are simulated using and . We explore the parameter space of the mass, width, production cross section, and the effective double-parton scattering cross section () relevant for the meson background. The integrated luminosity required for a discovery at LHCb is evaluated under various assumptions. In particular, we consider three representative production cross section scenarios: an optimistic estimate of , an intermediate value of obtained by scaling from the production cross section, and a conservative lower bound of . We find that a observation is achievable for a production cross section of , which is expected to be within reach during Run~4. In contrast, the more realistic cross section estimate of requires the full Run~5 dataset () under the most favorable parameter choices. For the conservative scenario, no significant signal would be observable even with . In addition, we estimate the minimum observable for a discovery under different luminosity scenarios, providing guidance for future experimental searches at LHCb.