arXiv · hep-ph/9806370
Random Matrices and Chiral Symmetry in QCD
Abstract
In this talk we review some recent results from random matrix models as applied to some non-perturbative issues in QCD. All of the issues we will discuss touched upon the important phenomenon related to the spontaneous breaking of chiral symmetry. The afore mentioned insights are: 1. Spontaneous breakdown of chiral symmetry and disorder. 2. Universal microscopic properties of the eigenvalues of the Dirac operator in the vacuum. 3. Universal microscopic properties of the eigenvalues of the Dirac operator in matter. 4. Structural changes of the Dirac spectrum - finite temperature. 5. Structural changes of the Dirac spectrum - finite baryonic density - ``phony vacua'' 6. Structural changes of the Dirac spectrum - finite baryonic density - ``true vacua'' . 7. Phase diagram. 8. Critical parameters. 9. Critical exponents. 10. $U(1)_A$ problem. 11. Screening of the pseudoscalar susceptibility. 12. Strong CP violation (finite $θ$).
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Romuald A. Janik, Maciej A. Nowak, Gabor Papp, Ismail Zahed. 1998-06-15. Random Matrices and Chiral Symmetry in QCD. https://arxiv.org/abs/hep-ph/9806370
Cite the original work for its findings. Save a collection to share your selection of sources.