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The chiral critical line of N_f=2+1 QCD at zero and non-zero baryon density

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arxiv hep-lat/0607017 v2 pith:L6UK3RNG submitted 2006-07-14 hep-lat hep-phnucl-th

classification hep-lathep-phnucl-th
keywords criticalquarklinebaryonchiraldensitymassphase
verification ladder T0 review T1 audit T2 compute T3 formal
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We present numerical results for the location of the chiral critical line at finite temperature and zero and non-zero baryon density for QCD with N_f=2+1 flavours of staggered fermions on lattices with temporal extent N_t=4. For degenerate quark masses, we compare our results obtained with the exact RHMC algorithm with earlier, inexact R-algorithm results and find a reduction of 25% in the critical quark mass, for which the first order phase transition changes to a smooth crossover. Extending our analysis to non-degenerate quark masses, we map out the chiral critical line up to the neighbourhood of the physical point, which we confirm to be in the crossover region. Our data are consistent with a tricritical point at a strange quark mass of ~500 MeV. Finally, we investigate the shift of the critical line with finite baryon density, by simulating with an imaginary chemical potential for which there is no sign problem. We observe this shift to be very small or, conversely, the critical endpoint \mu^c(m_{u,d},m_s) to be extremely quark mass sensitive. Moreover, the sign of this shift is opposite to standard expectations. If confirmed on a finer lattice, it implies the absence of a critical endpoint or phase transition for chemical potentials \mu_B < 500 MeV. We thus argue that finer lattices are required to settle even the qualitative features of the QCD phase diagram.

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Cited by 4 Pith papers

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  1. First-order phase transitions in the heavy quark region of lattice QCD at high temperatures and high densities

    hep-lat 2025-01 conditional novelty 6.0 of 10

    In the heavy quark region of QCD, the phase transition is predicted to become first-order again at very high baryon chemical potential, after first turning into a crossover at moderate density.

  2. On the nature of the QCD chiral phase transition with imaginary chemical potential

    hep-lat 2025-12 conditional novelty 5.0 of 10

    First-order chiral regions observed on coarse staggered lattices disappear in tricritical points as the lattice spacing decreases at imaginary chemical potential, implying a second-order continuum transition.

  3. The QCD phase diagram for three-flavor M\"obius domain-wall fermions

    hep-lat 2026-06 unverdicted novelty 4.0 of 10

    Lattice simulations with Möbius domain-wall fermions find the three-flavor QCD transition at mu_B=0 is a continuous crossover at pseudocritical quark masses of 184(10) MeV (Nt=6), 36-39 MeV (Nt=8), and 3.5-3.7 MeV (Nt...

  4. Effect of anomalous magnetic moment of quarks on the phase structure and mesonic properties in the NJL model

    nucl-th 2019-07 unverdicted novelty 4.0 of 10

    In the two-flavor NJL model with anomalous magnetic moment of quarks, external magnetic field produces inverse magnetic catalysis and a magnetic-field-dependent drop in the Mott temperature for the Goldstone mode.

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