7,922 research outputs found
Variational Approach to Yang--Mills Theory with non-Gaussian Wave Functionals
A general method for treating non-Gaussian wave functionals in quantum field
theory is presented and applied to the Hamiltonian approach to Yang-Mills
theory in Coulomb gauge in order to include a three-gluon kernel in the
exponential of the vacuum wave functional. The three-gluon vertex is calculated
using the propagators found in the variational approach with a Gaussian trial
wave functional as input.Comment: 3 pages, 4 figures, talk presented at "Quark Confinement and the
Hadron Spectrum IX", Madrid, August 30-September 3, 2010, to appear in the
proceeding
The deconfinement phase transition in the Hamiltonian approach to Yang--Mills theory in Coulomb gauge
The deconfinement phase transition of SU(2) Yang--Mills theory is
investigated in the Hamiltonian approach in Coulomb gauge assuming a
quasi-particle picture for the grand canonical gluon ensemble. The thermal
equilibrium state is found by minimizing the free energy with respect to the
quasi-gluon energy. Above the deconfinement phase transition the ghost form
factor remains infrared divergent but its infrared exponent is approximately
halved, while the gluon energy, being infrared divergent in the confined phase,
becomes infrared finite in the deconfined phase. For the effective gluon mass
we find a critical exponent of 0.37. Using the lattice results for the gluon
propagator to fix the scale, the deconfinement transition temperature is
obtained in the range of 275 to 290 MeV.Comment: 20 pages, 13 figures, accepted for publication by Phys. Rev.
Octet and Decuplet Baryons in a Covariant and Confining Diquark-Quark Model
The baryon octet and decuplet masses and Bethe-Salpeter vertex and wave
functions are calculated in the ladder approximation to the quark exchange
between a scalar or axialvector diquark and a constituent quark. These
functions reflecting full Lorentz covariance are given in terms of an expansion
in Gegenbauer polynomials. In the rest frame of the baryon, a complete partial
wave decomposition of the Bethe-Salpeter wave function is performed. The
confinement of quarks and diquarks is implemented via a parametrisation of the
corresponding propagators. We also discuss some aspects of the momentum routing
in the ladder approximation to the Bethe-Salpeter equation. Numerical results
for the octet and decuplet masses with broken flavour SU(3) in the conserved
isospin limit are presented.Comment: 36 pages, 10 figures, LaTeX-Style article using epsfig. Bug in
program code detected; numerical results changed slightly, i.e. on the order
of a few percent, conclusions are not change
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