Amplitude analysis of B+→ ψ(2S)K+π+π− decays
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Publication date
2025-01-08ISSN
1126-6708
Abstract
The first full amplitude analysis of B+ → ψ(2S)K+π+π− decays is performed using proton-proton collision data corresponding to an integrated luminosity of 9 fb−1 recorded with the LHCb detector. The rich K+π+π− spectrum is studied and the branching fractions of the resonant substructure associated with the prominent K1(1270)+ contribution are measured. The data cannot be described by conventional strange and charmonium resonances only. An amplitude model with 53 components is developed comprising 11 hidden-charm exotic hadrons. New production mechanisms for charged charmonium-like states are observed. Significant resonant activity with spin-parity JP = 1+ in the ψ(2S)π+ system is confirmed and a multi-pole structure is demonstrated. The spectral decomposition of the ψ(2S)π+π− invariant-mass structure, dominated by X0 → ψ(2S)ρ(770)0 decays, broadly resembles the J/ψϕ spectrum observed in B+ → J/ψϕK+ decays. Exotic ψ(2S)K+π− resonances are observed for the first time.
Document Type
Article
Document version
Published version
Language
English
Subject (CDU)
53 - Physics
530.1 - General principles of physics
539 - Physical nature of matter
Keywords
Pages
69 p.
Publisher
Springer
Is part of
Journal of High Energy Physics. 2025 (054) 2025
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© CERN
Except where otherwise noted, this item's license is described as http://creativecommons.org/licenses/by/4.0/


