Hadron properties from QCD bound-state equations: A status report
arXiv:0912.3105 · doi:10.1088/1674-1137/34/9/005
Abstract
Employing an approach based on the Green functions of Landau-gauge QCD, some selected results from a calculation of meson and baryon properties are presented. A rainbow-ladder truncation to the quark Dyson-Schwinger equation is used to arrive at a unified description of mesons and baryons by solving Bethe-Salpeter and covariant Faddeev equations, respectively.
6 pages, 4 figures; Plenary talk given at the 5-th Int. Conf. on Quarks and Nuclear Physics, Beijing, September 21-26,2009
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Cited by in corpus (7)
- Delta and Omega masses in a three-quark covariant Faddeev approach
- Effects of a dressed quark-gluon vertex in vector heavy-light mesons and theory average of B(c)* meson mass
- Matrix algorithms for solving (in)homogeneous bound state equations
- SU(3) Landau gauge gluon and ghost propagators using the logarithmic lattice gluon field definition
- Light-quarkonium spectra and orbital-angular-momentum decomposition in a Bethe-Salpeter-equation approach
- Delta properties in the rainbow-ladder truncation of Dyson-Schwinger equations
- Leptonic decays of D-wave vector quarkonia