English

Two-flavor lattice QCD study of $\Lambda$(1405)

High Energy Physics - Lattice 2010-11-05 v1

Abstract

Low-lying Λ\Lambda baryons with spin 1/2 are analyzed in two-flavor unquenched lattice QCD. We construct 2×22 \times 2 cross correlators from flavor SU(3) ``octet'' and ``singlet'' baryon operators, and diagonalize them so that we can extract two low-lying states for each parity. The two-flavor CP-PACS gauge configurations are employed, which are generated in the renormalization-group improved gauge action and the O(a){\mathcal O}(a)-improved quark action. Simulation are performed at three different β\beta's, β=1.80\beta = 1.80, 1.95 and 2.10, whose corresponding lattice spacings are a=0.2150a = 0.2150, 0.1555 and 0.1076 fm. For each cutoff, we adopt four different hopping parameters, (κval,κsea\kappa_{\rm val}, \kappa_{\rm sea}). The corresponding pion masses range about from 500 MeV to 1.1 GeV. Results indicate that there are two negative-parity Λ\Lambda states nearly degenerate at around 1.6 GeV, while no state as low as Λ(1405)\Lambda (1405) is observed. By decomposing the flavor components of each state, we find that the lowest (1st-excited) negative-parity state is dominated by flavor-singlet (flavor-octet) component.

Keywords

Cite

@article{arxiv.0911.2542,
  title  = {Two-flavor lattice QCD study of $\Lambda$(1405)},
  author = {Toru T. Takahashi and Makoto Oka},
  journal= {arXiv preprint arXiv:0911.2542},
  year   = {2010}
}

Comments

7pages, 2figures, presented at the "XXVII International Symposium on Lattice Field Theory", July 26-31, 2009, Peking University, Beijing, China

R2 v1 2026-06-21T14:11:04.882Z