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August 14, 2025Journal of High Energy Physics3 citationsOpen Access

The ππ scattering amplitude at large Nc

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JBJorge Baeza-BallesterosPHPilar HernándezFRFernando Romero-López

Key Points

  • Lattice calculations show meson-meson scattering amplitudes scale with the number of colors, Nc, and follow expected patterns.
  • The study finds evidence of a virtual bound state with energy E virtual = 1.63 MeV at Nc = 3, indicating the presence of exotic states.
  • Analysis employed Lüscher’s quantization condition to extract finite-volume energies with multiple operator combinations, highlighting complexities in scattering.
  • The results constrain low-energy constants in large Nc ChPT, providing important insights into the underlying meson interactions.

Abstract

A bstract We study the scaling of meson-meson scattering amplitudes with the number of colors, N c. We use lattice calculations in a theory with N f = 4 degenerate flavors, with N c = 3 – 6 and pion mass M π ≈ 560 MeV. We focus on three different scattering channels, two of which have the same quantum numbers as some tetraquark candidates recently found at LHCb: the T₂ₒ₀⁰ (2900) T cs 0 0 2900, T₂ₒ₀^++ (2900) T c s ¯ 0 + + 2900, T₂ₒ₀⁰ (2900) T c s ¯ 0 0 2900 and T₂ₒ₁⁰ (2900) T cs 1 0 2900 states. Finite-volume energies are extracted using a large set of operators, containing two-particle operators with the form of two pions or two vector mesons, and local tetraquark operators. The resulting energy spectra is used to constrain the infinite-volume scattering amplitude by means of Lüscher’s quantization condition. We consider polynomial parametrizations of the phase shift, as well as one-loop chiral perturbation theory (ChPT) predictions. We find that our lattice results follow the expected N c scaling and are sensitive to subleading N c corrections. In addition, we constrain the scaling of different combinations of low-energy constants from matching to large N c ChPT. The results for the channel corresponding to a (^+Dₛ^+-K^+D^+) π + D s + − K + D + state show evidence of a virtual bound state with energy E virtual = 1. 63 (10) M π for N c = 3, while this pole disappears at N c > 3. This may be connected to the exotic states found in experiment.

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Cite This Study

Baeza-Ballesteros et al. (2025) studied this question.

synapsesocial.com/papers/68af4ec0ad7bf08b1ead7cd8https://doi.org/10.1007/jhep08(2025)110
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