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- W2239779968 abstract "In this paper we study a ($1+1$)-dimensional version of the famous Nambu--Jona-Lasinio model of quantum chromodynamics (QCD2) both at zero and at finite baryon density. We use nonperturbative techniques (non-Abelian bosonization and the truncated conformal spectrum approach). When the baryon chemical potential, $ensuremath{mu}$, is zero, we describe the formation of fermion three-quark (nucleons and $mathrm{ensuremath{Delta}}$ baryons) and boson (two-quark mesons, six-quark deuterons) bound states. We also study at $ensuremath{mu}=0$ the formation of a topologically nontrivial phase. When the chemical potential exceeds the critical value and a finite baryon density appears, the model has a rich phase diagram which includes phases with a density wave and superfluid quasi-long-range (QLR) order, as well as a phase of a baryon Tomonaga-Luttinger liquid (strange metal). The QLR order results in either a condensation of scalar mesons (the density wave) or six-quark bound states (deuterons)." @default.
- W2239779968 created "2016-06-24" @default.
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- W2239779968 date "2016-08-03" @default.
- W2239779968 modified "2023-10-18" @default.
- W2239779968 title "Particle formation and ordering in strongly correlated fermionic systems: Solving a model of quantum chromodynamics" @default.
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- W2239779968 doi "https://doi.org/10.1103/physrevd.94.045003" @default.
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