Physics – High Energy Physics – High Energy Physics - Lattice
Scientific paper
2011-12-09
Physics
High Energy Physics
High Energy Physics - Lattice
26 pages, 4 figures, 6 tables, typos are fixed and references are updated
Scientific paper
We calculate the masses of taste non-Goldstone pions and kaons in staggered chiral perturbation theory through next-to-leading order in the standard power counting. The results can be used to quantitatively understand taste violations in existing lattice data generated with staggered fermions and to extract the $u$, $d$, and $s$ quark masses and Gasser-Leutwyler parameters from the experimentally observed spectrum. The expressions for the non-Goldstone masses contain low-energy couplings unique to the non-Goldstone sector. With two exceptions these enter as coefficients of analytic terms; all the new couplings can be fixed by performing spectrum calculations. We report one-loop results for the quenched case and the fully dynamical and partially quenched 1+1+1 and 2+1 flavor cases in the chiral SU(3) and SU(2) theories.
Bailey Jon A.
Kim Hyung-Jin
Lee Weonjong
SWME Collaboration
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