English

Pole-Expansion of Two-Hadron Imaginary-Time Correlation Function -a new method of analysis for unstable states in lattice QCD-

High Energy Physics - Lattice 2025-05-07 v1 Nuclear Theory

Abstract

We analyze the pole expansion of the two-hadron imaginary-time correlation function. We first explain the general idea that the imaginary-time correlation function is expressed as a sum of the pole terms, the Mittag-Leffler expansion, in terms of the uniformization variable, which makes the S-matrix single-valued. We then derive explicit expressions of the pole expansion for the single-channel (ρ\rho meson) and two-channel (Λ(1405)\Lambda(1405)) examples and demonstrate that the pole expansion actually holds employing phenomenological models, the vector-dominance model for the ρ\rho meson and the chiral unitary model for Λ(1405)\Lambda(1405). From this observation we propose the pole expansion as a method to extract information of unstable states such as masses and widths from the two-hadron imaginary-time correlation functions obtained by lattice QCD simulations.

Keywords

Cite

@article{arxiv.2505.02878,
  title  = {Pole-Expansion of Two-Hadron Imaginary-Time Correlation Function -a new method of analysis for unstable states in lattice QCD-},
  author = {Wren Yamada and Osamu Morimatsu and Toru Sato and Koichi Yazaki},
  journal= {arXiv preprint arXiv:2505.02878},
  year   = {2025}
}

Comments

16 pages, 8 figures