Published December 1, 2009 | Version v1
Journal article

Low-lying baryon spectrum with two dynamical twisted mass fermions

  • 1. Computation-based Science and Technology Research Center, Cyprus Institute, 20 Kavafi Strasse, Nicosia 2121 (Cyprus)
  • 2. Department of Physics, University of Cyprus, P.O. Box 20537, 1678 Nicosia (Cyprus)
  • 3. CEA-Saclay, IRFU/Service de Physique Nucleaire, 91191 Gif-sur-Yvette (France)
  • 4. Laboratoire de Physique Subatomique et Cosmologie, UJF/CNRS/IN2P3, 53 avenue des Martyrs, 38026 Grenoble (France)
  • 5. NIC, DESY, Platanenallee 6, D-15738 Zeuthen (Germany)
  • 6. Laboratoire de Physique Theorique (Batiment 210), Universite de Paris XI, CNRS-UMR8627, Centre d'Orsay, 91405 Orsay-Cedex (France)

Description

The masses of the low-lying baryons are evaluated using two degenerate flavors of twisted mass sea quarks corresponding to pseudoscalar masses in the range of about 270-500 MeV. The strange valence quark mass is tuned to reproduce the mass of the kaon in the physical limit. The tree-level Symanzik improved gauge action is employed. We use lattices of spatial size 2.1 and 2.7 fm at two values of the lattice spacing with r0/a=5.22(2) and r0/a=6.61(3). We check for both finite volume and cutoff effects on the baryon masses. We performed a detailed study of the chiral extrapolation of the octet and decuplet masses using SU(2) χPT. The lattice spacings determined using the nucleon mass at the physical point are consistent with the values extracted using the pion decay constant. We examine the issue of isospin symmetry breaking for the octet and decuplet baryons and its dependence on the lattice spacing. We show that in the continuum limit isospin breaking is consistent with zero, as expected. The baryon masses that we find after taking the continuum limit and extrapolating to the physical limit are in good agreement with experiment.

Additional details

Publishing Information

Journal Title
Physical Review. D, Particles Fields
Journal Volume
80
Journal Issue
11
Journal Page Range
p. 114503-114503.21
ISSN
0556-2821
CODEN
PRVDAQ

Optional Information

Notes
(c) 2009 The American Physical Society