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arXiv:1411.2004·v2·High Energy Physics — Phenomenology

Resonances in coupled scattering from lattice QCD

David J. Wilson🇺🇸 · Jozef J. Dudek🇺🇸 · Robert G. Edwards🇺🇸 · Christopher E. Thomas🇬🇧

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Abstract

Coupled-channel and scattering amplitudes are determined by studying the finite-volume energy spectra obtained from dynamical lattice QCD calculations. Using a large basis of interpolating operators, including both those resembling a construction and those resembling a pair of mesons with relative momentum, a reliable excited-state spectrum can be obtained. Working at , we find a gradual increase in the phase-shift which may be identified with a broad scalar resonance that couples strongly to and weakly to . The low-energy behavior of this amplitude suggests a virtual bound-state that may be related to the resonance. A bound state with is found very close to the threshold energy, whose coupling to the channel is compatible with that of the experimental . Evidence is found for a narrow resonance in . Isospin--3/2 scattering is also studied and non-resonant phase-shifts spanning the whole elastic scattering region are obtained.

Comments: 32 pages, 27 figures - replaced to better match version appearing in PRD. Previously incorrect JLab preprint number also corrected

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