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COLOR CONFINEMENT AND HADRONS – PROCEEDINGS OF THE INTERNATIONAL RCNP WORKSHOP
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COLOR CONFINEMENT AND HADRONS – PROCEEDINGS OF THE INTERNATIONAL RCNP WORKSHOP
Author:AL TOKI H ET (EN)
A introductory fragment is available
Language of a book: Английский
Publisher: Gardners Books

    The purpose of this workshop is to discuss the various pictures of color confinement and its consequences on the properties of hadrons. We consider color confinement, chiral symmetry breaking, and the properties of Q at finite temperature, as the fundamental subjects of Q. We include discussions on the roles of instantons to hadron physics. We also provide ideas of critical experiments at medium to higher energies to identify the mechanism of color confinement and chiral symmetry breaking.Contents: Monopole Condensation in Lattice SU(2) Q (T Suzuki)Monopole Condensation in Gauge Theory Vacuum (A Di Giacomo)Dual Abrikosov Vortices in Conflining Theories (R W Haymaker)Dual Ginzburg–Landau Theory for Nonperturbative Q (H Suganuma et al.)On the Structure of the Yang–Mills Vacuum (G Schierholz & G T der Elementarteilchen)Extracting the Thermodynamics of SU(N) Gauge Theories in the Continuum Limit (F Karsch)Field Strength Approach to Yang–Mills Theory in Maximal Abelian Gauge (H Reinhardt)Chiral Symmetry Breaking in Improved Ladder Approximation (K Higashijima)Meson Properties from Improved Ladder Bethe–Salpeter Equations (T Kugo)Dual Ginzburg–Landau Theory and Chiral Symmetry Breaking (H Toki)Q Monopoles and Chiral Symmetry Breaking on SU(2) Lattice (O Miyamura & S Origuchi)Gauge Fixing on the Lattice (Ph DeForcrand)A Class of Saddle–Point Configurations in Three-Dimensional SU(2) Lattice Gauge Theory (R D Mawhinney)Quark–Hadron Phase Transition in the Early Universe (T Kajino)and other papersReadership: Researchers in high energy physics (theory) and nuclear physics.Key Features:Goes beyond the usual textbook treatment of fermion pairing, which is limited to BCS theoryProvides an introduction to cutting-edge applications of the theory of fermion pairing in emerging fields of current importanceProvides a perspective for the further development of the basic theory of fermionic systemsA valuable reference for graduates as well as researchers

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