## Quark Confinement and the Hadron Spectrum VI: 6th Conference on Quark Confinement and the Hadron SpectrumThis book provides an update on our understanding of strong interactions with theoretical and experimental highlights included. It is divided into five sections. The first section is devoted to the investigations into the QCD Vacuum and the latest results on the mechanism of quark confinement. The second and third sections focus respectively on light and heavy quarks (effective field theories, Schwinger-Dyson approach and lattice QCD results). The fourth section deals with the deconfinement mechanism and quark-gluon plasma formation signals. The last section presents highlights of experiments, new physics beyond QCD, and nonperturbative approaches in other theories (strings and SUSY) that may be useful in QCD. |

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### Contents

Direct Photons as a Probe of Deconfinement in Heavy Ion Collisions | 10 |

New Results from CLEO HI and CLEOc | 20 |

Baryons in the VNC Expansion | 30 |

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2005 American Institute Abelian amplitude analysis baryon bottomonium Brambilla calculations charm chemical potential chiral symmetry Collaboration collisions color condensate configurations contributions corresponding Coulomb cross section D'Alesio decay deconfined phase deconfinement dependence Devoto diquark distribution dynamical effective theory equation experimental factor fermions field FIGURE finite Fisica G.M. Prosperi gluon propagator gluonic Hadron Spectrum heavy quark infrared Institute of Physics interaction invariant invariant mass isospin Lagrangian Landau gauge lattice QCD Lett loop matrix elements Maung measured mesons momenta momentum monopoles non-perturbative Nucl nuclear observed obtained parameter particle parton pentaquark perturbative phase transition photon Phys pion potential prediction production quantum Quark Confinement quark mass quark model quarkonium ratio region renormalization resonance RHIC scalar scale Serci shown simulations solution Spectrum VI edited strange quark symmetry breaking temperature theoretical transverse wave function width Wilson loop Yang-Mills theory zero