English

Finite T meson correlations and quark deconfinement

Nuclear Theory 2009-11-06 v2 High Energy Physics - Phenomenology

Abstract

Finite temperature spatial qˉq\bar q q correlation modes in the π\pi and ρ\rho channels are studied with the rainbow-ladder truncated quark Dyson-Schwinger equation and Bethe-Salpeter equation in the Matsubara formalism. To retain the finite range of the effective interaction while facilitating summation over fermion Matsubara modes necessary to ensure continuity at {T=0}, a separable kernel is used. The model is fixed by {T=0} properties and it implements dynamical chiral symmetry breaking and quark confinement. Above and below the deconfinement and chiral restoration transitions, we study Mπ(T)M_\pi(T), fπ(T)f_\pi(T) and the 3-space transverse and longitudinal masses MρT(T)M_\rho^T(T) and MρL(T)M_\rho^L(T). For the ρ\rho mode we also study the strong and electromagnetic partial widths to determine the TT-dependence that is generated by the quark content. The ρππ\rho \to \pi \pi width decreases sharply just above the chiral restoration transition leaving the ρ\rho with only its narrow {e+ee^+ e^-} width. We discuss improvements needed by this model, especially in regard to the high TT behavior of the masses where we compare to lattice QCD simulations.

Keywords

Cite

@article{arxiv.nucl-th/0002024,
  title  = {Finite T meson correlations and quark deconfinement},
  author = {D. Blaschke and G. Burau and Yu. L. Kalinovsky and P. Maris and P. C. Tandy},
  journal= {arXiv preprint arXiv:nucl-th/0002024},
  year   = {2009}
}

Comments

Revised, shortened version that has been published; 24 pages, REVTEX, 7 figs, epsfig