Meson-baryon bound states in a (2+1)-dimensional strongly coupled lattice QCD model.
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2004
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We consider bound states of a meson and a baryon ~meson and antibaryon! in lattice QCD in a Euclidean
formulation. For simplicity, considering the 1 parity sector we analyze an SU(3) theory with a single flavor in
211 dimensions and two-dimensional Dirac matrices. We work in the strong coupling regime, i.e., in a region
of parameters such that the hopping parameter k is sufficiently small and k@g0
22, where g0
22 is the pure gauge
coupling. There is a meson ~baryon! particle with asymptotic mass 22 lnk (23 lnk) and an isolated dispersion
curve. Here, in a ladder approximation, we show that there is no meson baryon ~or meson-antibaryon!
bound state solution to the Bethe-Salpeter equation up to the meson-baryon threshold (;25 lnk). The absence
of such a bound state is an effect of a spatial range-one repulsive potential that is local in space at order
k 3, i.e., the leading order in the hopping parameter k .
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FRANCISCO NETO, A. Meson-baryon bound states in a (2+1)-dimensional strongly coupled lattice QCD model. Physical Review D, v. 70, n. 037502, p. 1-4, 2004. Disponível em: <https://journals.aps.org/prd/abstract/10.1103/PhysRevD.70.037502>. Acesso em: 20 jul. 2017.