Strong decays of the isovector-scalar D*D¯* hadronic molecule

Author:

Deng Jin-Cheng1,Wang Bo123ORCID

Affiliation:

1. Hebei University

2. Hebei Key Laboratory of High-precision Computation and Application of Quantum Field Theory

3. Hebei Research Center of the Basic Discipline for Computational Physics

Abstract

We adopt the effective Lagrangian approach to study the strong decays of the 1(0++)D*D¯* molecular state [denoted as Tψ0a(4010) according to the LHCb naming convention] through triangle diagrams. The decay channels include the open-charm DD¯, and the hidden-charm ηcπ, J/ψρ, and χc1π. The coupling between the Tψ0a(4010) and its constituents D*D¯* is obtained by solving for the residue of the scattering T-matrix at the pole. Our calculations yield a total width of few tens MeV for the Tψ0a(4010) state using three different form factors, with its main decay channels being ηcπ and χc1π. The X(4100) and X(4050) have similar masses and widths, with both masses being close to the D*D¯* threshold. Additionally, their decay final states are consistent with those of the Tψ0a(4010). Therefore, it is likely that they represent the same state and both potentially correspond to the Tψ0a(4010). We suggest that future experiments focus on searching for the Tψ0a(4010) signal in the final states ηcπ, χc1π, and D0D of the B0ηcπK+, χc1πK+, and D0DK+ processes, respectively, as well as further investigating its resonance parameters with Flatté-like formula. Published by the American Physical Society 2024

Funder

National Natural Science Foundation of China

Hebei University

Publisher

American Physical Society (APS)

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