English

Light-quark mass dependence of the $\Lambda(1405)$ resonance

High Energy Physics - Phenomenology 2024-06-11 v2 Nuclear Theory

Abstract

We present the light-quark mass dependence of the Λ(1405)\Lambda(1405) resonance at leading order in a renormalizable framework of covariant chiral effective field theory. The meson-baryon scattering amplitudes, which are obtained by solving the scattering equation within time-ordered perturbation theory, follow the quark mass trajectory of the Coordinated Lattice Simulations consortium. At Mπ200M_\pi\approx 200 MeV and MK487M_K\approx 487 MeV, our parameter-free prediction of Λ(1405)\Lambda(1405) poles is consistent with the recent lattice results of BaSc Collaboration [Phys. Rev. Lett. 132, 051901 (2024)]. Varying the pion mass from 135135 MeV to 400400 MeV, we present the evolution of double-pole positions of Λ(1405)\Lambda(1405): the higher pole remains a resonance around the KˉN\bar{K}N threshold; whereas the lower pole undergoes a transition from resonance to a virtual state, and ultimately to a bound state of the πΣ\pi\Sigma system, which could be verified by the forthcoming lattice QCD simulations.

Keywords

Cite

@article{arxiv.2404.02720,
  title  = {Light-quark mass dependence of the $\Lambda(1405)$ resonance},
  author = {Xiu-Lei Ren},
  journal= {arXiv preprint arXiv:2404.02720},
  year   = {2024}
}

Comments

9 pages, 4 figures, 1 table; version to appear in Phys. Lett. B

R2 v1 2026-06-28T15:42:59.960Z