English

QCD Originated Dynamical Symmetry for Hadrons

High Energy Physics - Theory 2007-05-23 v1

Abstract

We extend previous work on the IR regime approximation of QCD in which the dominant contribution comes from a dressed two-gluon effective metric-like field Gμν=gabBμaBνbG_{\mu\nu} = g_{ab} B^{a}_{\mu} B^{b}_{\nu} (gabg_{ab} a color SU(3) metric). The ensuring effective theory is represented by a pseudo-diffeomorphisms gauge theory. The second -quantized GμνG_{\mu\nu} field, together with the Lorentz generators close on the SLˉ(4,R)\bar{SL}(4,R) algebra. This algebra represents a spectrum generating algebra for the set of hadron states of a given flavor - hadronic "manifields" transforming w.r.t. SLˉ(4,R)\bar{SL}(4,R) (infinite-dimensional) unitary irreducible representations. The equations of motion for the effective pseudo-gravity are derived from a quadratic action describing Riemannian pseudo-gravity in the presence of shear (SLˉ(4,R)\bar{SL}(4,R) covariant) hadronic matter currents. These equations yield p4p^{-4} propagators, i.e. a linearly rising confining potential H(r)rH(r) \sim r, as well as linear Jm2J \sim m^{2} Regge trajectories. The SLˉ(4,R)\bar{SL}(4,R) symmetry based dynamical theory for the QCD IR region is applied to hadron resonances. All presently known meson and baryon resonances are successfully accommodated and various missing states predicted. (Lectures presented at the Danube Workshop '93, June 1993, Belgrade, Yugoslavia.)

Keywords

Cite

@article{arxiv.hep-th/9311033,
  title  = {QCD Originated Dynamical Symmetry for Hadrons},
  author = {Djordje Šijački},
  journal= {arXiv preprint arXiv:hep-th/9311033},
  year   = {2007}
}

Comments

13 pages, Plain Tex