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arXiv:1110.5132·v1·Nuclear Theory

BCS theory of hadronic matter at high densities

Henrik Bohr🇩🇰 · Prafulla K. Panda🇮🇳 · Constança Providência🇵🇹 · João da Providência🇵🇹

Abstract

The equilibrium between the so-called 2SC and CFL phases of strange quark matter at high densities is investigated in the framework of a simple schematic model of the NJL type. Equal densities are assumed for quarks and . The 2SC phase is here described by a color-flavor symmetric state, in which the quark numbers are independent of the color-flavor combination. In the CFL phase the quark numbers depend on the color-flavor combination, that is, the number of quarks associated with the color-flavor combinations is different from the number of quarks associated with the color flavor combinations . We find that the 2SC phase is stable for a chemical potential below GeV, while the CFL phase is stable above, the equilibrium pressure being GeV. We have used a 3-momentum regularizing cutoff GeV, which is somewhat larger than is usual in NJL type models. This should be adequate if the relevant chemical potential does not exceed 0.6 GeV.

Comments: 6 figures, 13 pages

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