Qcd Vacuum Structure: Proceedings of the Workshop on Qcd Vacuum Structure and Its Applications
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Qcd Vacuum Structure: Proceedings of the Workshop on Qcd Vacuum Structure and Its Applications The American University of Paris June 1-5, 1992 by H. M. Fried

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Published by World Scientific Pub Co Inc .
Written in English


  • Atomic & molecular physics,
  • Nuclear structure physics,
  • Particle & high-energy physics,
  • Particle Physics,
  • Science/Mathematics

Book details:

Edition Notes

ContributionsB. Muller (Editor)
The Physical Object
Number of Pages388
ID Numbers
Open LibraryOL13167716M
ISBN 109810212801
ISBN 109789810212803

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  This volume contains the lectures presented at the Workshop on QCD Vacuum Structure and Its Applications, held in Paris, France, in June The structure of the vacuum state of quantum chromodynamics is one of the major . Qcd Vacuum Structure - Proceedings of the Workshop on Qcd Vacuum Structure and Its Applications. Singapore: World Scientific Publishing Co Pte Ltd, © Material Type: Document, Internet resource: Document Type: Internet Resource, Computer File: All Authors / Contributors: Herbert Martin Fried; Berndt Muller; B Mueller. VEVs of nonlocal gluon operators are also of interest for studies of the QCD vacuum structure; see Ref. [36] for a review and further references. The gluon case is . Overlap fermions preserve a remnant of chiral symmetry on the lattice. They are a powerful tool to investigate the topological structure of the vacuum of Yang-Mills theory and full QCD.

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Let me first recall that the basic concept of the SVZ sum rules, its foundation, is the following idea: The QCD vacuum structure is complicated and not yet fully analytically understood despite significant ∗ Permanent address Figure 1: Graphic representation of the SVZ sum rules in the correlation function〈 ¯ ψγ µ ψ(x Cited by: 3.   This book covers new developments in the area of algorithms, statistical physics, parallel computers and quantum computation, as well as recent advances concerning the standard model and beyond, the QCD vacuum, the glueball, hadron and quark masses, finite temperature and density, chiral fermions, SUSY, and heavy quark effective theory. The light front quantization of quantum field theories provides a useful alternative to ordinary equal-time particular, it can lead to a relativistic description of bound systems in terms of quantum-mechanical wave quantization is based on the choice of light-front coordinates, where + ≡ + plays the role of time and the corresponding spatial coordinate is. Then it was demonstrated in effective models as well and new additional dualities being found. We briefly recap the main features of this story and then discuss its applications as a tool to explore the QCD phase structure. The most appealing application is the possibility of getting the results on the QCD phase diagram at large baryon density.