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The phase diagram and bulk thermodynamical quantities in the NJL model at finite temperature and density

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arxiv nucl-th/9903048 v3 pith:L4YIRTAR submitted 1999-03-19 nucl-th hep-ph

The phase diagram and bulk thermodynamical quantities in the NJL model at finite temperature and density

classification nucl-th hep-ph
keywords modelphasedensitydiagraminstantonrajagopaltransitionalford
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We reexamine the recent instanton motivated studies of Alford, Rajagopal and Wilczek, and Berges and Rajagopal in the framework of the standard SU(2) Nambu-Jona-Lasinio model. The chiral phase diagram is calculated in the temperature--density plane, and the pressure is evaluated as the function of the density. Obtaining simple approximate relations describing the $T$-$\mu$ and $T$-$p_F$ phase transition lines we find that the results of the instanton based model and that of the NJL model are identical. The diquark transition line is also given.

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Cited by 3 Pith papers

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  1. Flavor-Dependent QCD Critical Endpoint and Dual-Channel Fluctuations from Multi-Charge Holography

    hep-ph 2026-07 conditional novelty 6.0

    A multi-charge holographic QCD model predicts coherent baryon- and charge-fluctuation peaks at sqrt(s_NN) ≈ 5-7 GeV, marking the QCD critical endpoint.

  2. Electron-Ion Collision Environment: Distribution of Quark Spin and Orbital Angular Momentum

    hep-ph 2026-07 conditional novelty 5.0

    Using NJL density-dependent quark masses in a light-front dressed-quark model, the paper predicts O(10–40%) medium modifications of GTMDs linked to quark OAM, spin, and spin–orbit correlation, and defines eA/eP GTMD r...

  3. Interplay between inhomogeneous chiral and crystalline color-superconducting phases in the two-flavor NJL model

    hep-ph 2026-06 unverdicted novelty 4.0

    In the two-flavor NJL model the wave vectors of the inhomogeneous chiral condensate and the single-plane-wave LOFF diquark condensate are never simultaneously nonzero, so the phases do not coexist.