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arXiv:2409.17059·v3·High Energy Physics — Lattice

Finite- and infinite-volume study of scattering

Sebastian M. Dawid🇺🇸 · Fernando Romero-López🇨🇭 · Stephen R. Sharpe🇺🇸

Abstract

We develop a comprehensive framework for extracting the pole position and properties of the doubly-charmed tetraquark from lattice QCD data using the relativistic three-particle formalism. This approach incorporates the effect of the one-pion exchange diagram in and scattering, making it applicable at energies coinciding with the left-hand cut in the partial-wave projected amplitude. We present an example application of this framework to existing lattice QCD data at MeV. We solve the integral equations describing the reaction, use LSZ reduction to determine the corresponding amplitude, and find the values of the infinite-volume two- and three-body matrices that lead to agreement with lattice phase shifts within their uncertainties. Using these matrices in the three-particle quantization condition, we describe the finite-volume spectrum and find good agreement with the lattice QCD energies. Our results suggest that, at this pion mass, the tetraquark appears as a pair of subthreshold complex poles whose precise location strongly depends on the value of the three-particle matrix.

Comments: 60 pages, 11 figures; (v.3: minor typos corrected, slight clarifications included in the discussion; matches the published version)

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