English

Two-pion exchange for coupled-channel scattering of two heavy mesons

High Energy Physics - Phenomenology 2025-03-24 v2 Nuclear Theory

Abstract

To improve the theoretical understanding of multiquark states like Zb(10610)Z_b(10610) and Zb(10650)Z_b(10650), we calculate the heavy-meson heavy-(anti)meson scattering potential up to next-to-leading order, O(Q2)O(Q^2), within chiral effective field theory (χ\chiEFT) employing a power counting scheme that explicitly keeps track with the large momentum scale Q2μδQ \sim \sqrt{2\mu \delta} (where δ=mVmP\delta = m_V - m_P is the vector-pseudoscalar mass difference and μ\mu their reduced mass) introduced by the coupled channel dynamics. We provide expressions for the two-pion exchange (TPE) terms up to O(Q2)O(Q^2) and their partial-wave decomposition. We show that these potentials are well-approximated by contact terms at O(Q2)O(Q^2), with minor residual non-analytic TPE contributions, supporting χ\chiEFT convergence in the theoretical predictions for Zb(10610)Z_b(10610) and Zb(10650)Z_b(10650), as well as their spin partners. These findings are also relevant for D()D()D^{(*)}D^{(*)} scattering, especially for the TccT_{cc} state, for both physical and lattice QCD data with moderately larger pion masses. We further demonstrate that the differences between isovector and isoscalar potentials for heavy mesons are naturally explained by the TPE contributions.

Keywords

Cite

@article{arxiv.2411.13303,
  title  = {Two-pion exchange for coupled-channel scattering of two heavy mesons},
  author = {J. T. Chacko and V. Baru and C. Hanhart and S. L. Krug},
  journal= {arXiv preprint arXiv:2411.13303},
  year   = {2025}
}

Comments

41 pages, 18 figures