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A Random Matrix Model for Color Superconductivity at Zero Chemical Potential
| Content Provider | Semantic Scholar |
|---|---|
| Author | Vanderheyden, Benôıt |
| Copyright Year | 1999 |
| Abstract | We discuss random matrix models for the spontaneous breaking of both chiral and color symmetries at zero chemical potential and finite temperature. Exploring different Lorentz and gauge symmetric color structures of the random matrix interactions, we find that spontaneous chiral symmetry breaking is always thermodynamically preferred over diquark condensation. Stable diquark condensates appear only as SU(2) rotated chiral condensates, which do not represent an independent thermodynamic phase. Our analysis is based on general symmetry arguments and hence suggests that no stable and independent diquark phase can form in QCD with two flavors at zero quark chemical potential. |
| File Format | PDF HTM / HTML |
| Alternate Webpage(s) | http://orbi.ulg.ac.be/bitstream/2268/18604/2/rmmuz99.pdf |
| Alternate Webpage(s) | http://arxiv.org/pdf/hep-ph/9910295v1.pdf |
| Language | English |
| Access Restriction | Open |
| Subject Keyword | Arabic numeral 0 Chirality (chemistry) Flavoring Interaction Spontaneous order Superconductivity Symmetry breaking Thermodynamics |
| Content Type | Text |
| Resource Type | Article |