Published April 25, 2024 | Version v1
Journal article Open

Cut structures and an observable singularity in the three-body threshold dynamics: The Tcc+ case

  • 1. School of Physics and Center of High Energy Physics, Peking University, Beijing 100871, China

Description

The three-body threshold effect, the distinctive and intriguing nonperturbative dynamics in the low-energy hadron-hadron scattering, has acquired compelling significance in the wake of the recent observation of the double-charm tetraquark Tcc+. This dynamics is characterized by the emergence of singular points and branch cuts within the interaction potential, occurring when the on-shell condition of the mediated particle is satisfied. The presence of these potential singularities indicates that the system is no longer Hermitian and also poses intractable challenges in obtaining exact solutions for dynamical scattering amplitudes. In this work, we develop a complex scaled Lippmann-Schwinger equation as an operation of analytical continuation of the T matrix to resolve this problem. Through a practical application to the DD*DD* process, we reveal complicated cut structures of the three-body threshold dynamics in the complex plane, primarily stemming from the one-pion exchange. Notably, our methodology succeeds in reproducing the Tcc+ structure, in alignment with the quasibound pole derived from the complex scaling method within the Schrödinger equation framework. More remarkably, after solving the on-shell T matrix on the positive real axis of momentum plane, we find an extra new structure in the DD* mass spectrum, which arises from a right-hand cut at a physical pion mass and should be observable in lattice QCD simulations and future high-energy experiments.

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10.1103_PhysRevD.109.L071505.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevD.109.L071505;
arXiv
arXiv:2309.09861;
Crossref Funder ID
10.13039/501100001809; 10.13039/501100012152;

Publishing Information

Journal Title
Physical Review D
Journal Volume
109
Journal Issue
7
Journal Page Range
7 pgs.
ISSN
1089-4918

Optional Information

Contract/Grant/Project number
11975033; 12070131001; 12147168
Notes
Contact Email: wangjzh2022@pku.edu.cn; Contact Email: lzy_15@pku.edu.cn; Contact Email: zhusl@pku.edu.cn; Record automatically processed
Funding organization
National Natural Science Foundation of China; National Postdoctoral Program for Innovative Talents