English

Precise determination of resonance pole parameters through Pad\'e approximants

High Energy Physics - Phenomenology 2015-06-23 v1 High Energy Physics - Lattice Nuclear Theory

Abstract

In this work, we present a precise and model--independent method to extract resonance pole parameters from phase-shift scattering data. These parameters are defined from the associated poles in the second Riemann sheet, unfolded by the analytic continuation to the complex pole using Pad\'e approximants. Precise theoretical parameterizations of pion-pion scattering phase shifts based on once-- and twice-- subtracted dispersion relations are used as input, whose functional form allows us to show the benefit and accuracy of the method. In particular, we extract from these parametrization the pole positions of the f0(500)f_0(500) at s=(453±15)i(297±15)\sqrt{s}=(453\pm 15) - i(297 \pm 15) MeV, the ρ(770)\rho(770) at s=(761.4±1.2)i(71.8±1.0)\sqrt{s}=(761.4\pm 1.2)-i(71.8 \pm 1.0) MeV, and the pole of the f2(1270)f_2(1270), located at s=(1267.3±1.7)i(95.0±2.3)\sqrt{s}=(1267.3\pm 1.7)-i(95.0\pm 2.3) MeV. The couplings of the resonances to two pions are also determined with high precision, obtaining respectively, 3.8±0.43.8\pm 0.4 GeV, 5.92±0.155.92\pm 0.15 and 4.41±0.234.41\pm 0.23 GeV1^{-1}. Special attention is dedicated to the systematic treatment of the theoretical and statistical uncertainties, together with their comparison with previous determinations.

Keywords

Cite

@article{arxiv.1410.2397,
  title  = {Precise determination of resonance pole parameters through Pad\'e approximants},
  author = {Pere Masjuan and Jacobo Ruiz de Elvira and Juan José Sanz-Cillero},
  journal= {arXiv preprint arXiv:1410.2397},
  year   = {2015}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-22T06:17:50.290Z