Coexistence of color superconductivity and chiral symmetry breaking within the NJL model |
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Authors: | D. Blaschke M.K. Volkov V.L. Yudichev |
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Affiliation: | 1.Fachbereich Physik, Universit?t Rostock, D-18051 Rostock, Germany,DE;2.Joint Institute for Nuclear Research, 141980 Dubna, Russian Federation,RU |
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Abstract: | The phase diagram for quark matter is investigated within a simple Nambu-Jona-Lasinio model without vector correlations. It is found that the phase structure in the temperature-density plane depends sensitively on the parametrization of the model. We present two schemes of parametrization of the model where, within the first one, a first-order phase transition from a phase with broken chiral symmetry to a color superconducting phase for temperatures below the triple point at T t = 55 MeV occurs, whereas for the second one a second-order phase transition for temperatures below T t = 7 MeV is found. In the latter case, there is also a coexistence phase of broken chiral symmetry with color superconductivity, which is a new finding within this class of models. Possible consequences for the phenomenology of the QCD phase transition at high baryon densities are discussed. Received: 3 January 2003 / Accepted: 21 February 2003 / Published online: 24 April 2003 |
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Keywords: | PACS. 11.30.Rd Chiral symmetries – 12.38.Lg Other nonperturbative calculations – 11.10.Wx Finite-temperature field theory – 25.75.Nq Quark deconfinement, quark-gluon plasma production, and phase transitions |
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