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Mesons and diquarks in the color neutral superconducting phase of dense cold quark matter

D. Ebert, K. G. Klimenko, V. L. Yudichev

DOI 10.1103/PhysRevD.72.056007 · Physical Review D

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Abstract

The spectrum of meson and diquark excitations of dense color neutral cold quark matter is investigated in the framework of a two-flavored Nambu–Jona-Lasinio–type model, including a quark μ- and color μ8-chemical potential. It was found that, in the color superconducting (2SC) phase, i.e. at μ>μc=342 MeV, μ8 acquires rather small values ∼10 MeV in order to ensure the color neutrality. In this phase the π and σ meson masses are evaluated around ∼330 MeV. The spectrum of scalar diquarks in the color neutral 2SC phase consists of a heavy [SUc(2)-singlet] resonance with mass ∼1100 MeV, four light diquarks with mass 3|μ8|, and one Nambu-Goldstone boson, which is in accordance with the Goldstone theorem. Moreover, in the 2SC phase there are five light stable particles as well as a heavy resonance in the spectrum of pseudoscalar diquarks. In the color symmetric phase, i.e. for μ<μc, a mass splitting of scalar diquarks and antidiquarks is shown to arise if μ≠0, contrary to the case of μ=0, where the masses of scalar antidiquarks and diquarks are degenerate at the value ∼700 MeV. If the coupling strength in the pseudoscalar diquark channel is the same as in the scalar diquark one (as for QCD-inspired Nambu–Jona-Lasinio models), then in the color symmetric phase pseudoscalar diquarks are not allowed to exist as stable particles.

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