English

I=2 Pion Scattering Phase Shift with Wilson Fermions

High Energy Physics - Lattice 2016-08-16 v3

Abstract

We present a lattice QCD calculation of the scattering phase shift for the I=2 SS-wave two-pion system using the finite size method proposed by L\"uscher. We work in the quenched approximation employing the standard plaquette action at β=5.9\beta=5.9 for gluons and the Wilson fermion action for quarks. The phase shift is extracted from the energy eigenvalues of the two-pion system, which are obtained by a diagonalization of the pion 4-point function evaluated for a set of relative spatial momenta. In order to change momentum of the two-pion system, calculations are carried out on 243×6024^3\times 60, 323×6032^3\times 60, and 483×6048^3\times 60 lattices. The phase shift is successfully calculated over the momentum range 0<p2<0.3GeV20 < p^2 < 0.3 {\rm GeV}^2.

Keywords

Cite

@article{arxiv.hep-lat/0209124,
  title  = {I=2 Pion Scattering Phase Shift with Wilson Fermions},
  author = {PACS Collaboration and S. Aoki and M. Fukugita and S. Hashimoto and K-I. Ishikawa and N. Ishizuka and Y. Iwasaki and K. Kanaya and T. Kaneko and Y. Kuramashi and V. Lesk and M. Okawa and Y. Taniguchi and A. Ukawa and T. Yoshié},
  journal= {arXiv preprint arXiv:hep-lat/0209124},
  year   = {2016}
}

Comments

LaTeX, 28 pages, 10 eps figures, uses revtex and epsfig

R2 v1 2026-07-22T13:13:21.005Z