Generalized Nambu-Goldstone pion in dense matter: a schematic NJL model
arXiv:1703.08236 · doi:10.1103/PhysRevC.96.025206
Abstract
Chiral symmetry is always broken in cold, dense matter, by chiral condensation at low densities and by diquark condensation at high density. We construct here, within a schematic Nambu-Jona-Lasinio (NJL) model, the corresponding generalized Nambu-Goldstone pion, . As we show, the mode naturally emerges as a linear combination of the vacuum pion and the diquark condensate pion , with the quark field, and continuously evolves with increasing density from being -like in the vacuum to -like in the high density diquark pairing phase. We calculate the density-dependent mass, decay constant, and coupling to quarks of the , and derive a generalized Gell-Mann--Oakes--Renner (GMOR) relation in the presence of a finite bare quark mass . We briefly discuss the implications of the results to possible Bose condensation of in more realistic models.
15 pages, 7 figures, 1 table
References in corpus (11)
- Color superconductivity in dense quark matter
- Inhomogeneous chiral condensates
- Mesonic correlation functions at finite temperature and density in the Nambu-Jona-Lasinio model with a Polyakov loop
- Phase structure, collective modes, and the axial anomaly in dense QCD
- Electrical neutrality and pion modes in the two flavor PNJL model
- Mass spectrum of diquarks and mesons in the color--flavor locked phase of dense quark matter
- Pseudoscalar Goldstone bosons in the color-flavor locked phase at moderate densities
- Meson Mixing in Pion Superfluid
- A diagrammatic derivation of the meson effective masses in the neutral color-flavor-locked phase of Quantum Chromodynamics
- Polyakov-Nambu-Jona Lasinio model and Color-Flavor-Locked phase of QCD
- Pseudo Nambu-Goldstone modes in neutron stars