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Inhomogeneities in the two-flavor chiral Gross-Neveu model

Julian Lenz, Michael Mandl, Andreas Wipf

2022Physical review. D/Physical review. D.23 citationsDOIOpen Access PDF

Abstract

We investigate the finite-temperature and -density chiral Gross-Neveu model with an axial ${U}_{A}(1)$ symmetry in $1+1$ dimensions on the lattice. In the limit where the number of flavors ${N}_{\mathrm{f}}$ tends to infinity the continuum model has been solved analytically and shows two phases: a symmetric high-temperature phase with a vanishing condensate and a low-temperature phase in which the complex condensate forms a chiral spiral which breaks translation invariance. In the lattice simulations we employ chiral SLAC fermions with exact axial symmetry. Similarly to ${N}_{\mathrm{f}}\ensuremath{\rightarrow}\ensuremath{\infty}$, we find for eight flavors, where quantum and thermal fluctuations are suppressed, two distinct regimes in the $(T,\ensuremath{\mu})$ phase diagram, characterized by qualitatively different behavior of the two-point functions of the condensate fields. More surprisingly, at ${N}_{\mathrm{f}}=2$, where fluctuations are no longer suppressed, the model still behaves similarly to the ${N}_{\mathrm{f}}\ensuremath{\rightarrow}\ensuremath{\infty}$ model and we conclude that the chiral spiral leaves its footprints even on systems with a small number of flavors. For example, at low temperature the two-point functions are still dominated by chiral spirals with pitches proportional to the inverse chemical potential, although in contrast to large ${N}_{\mathrm{f}}$ their amplitudes decrease with distance. We argue that these results should not be interpreted as the spontaneous breaking of a continuous symmetry, which is forbidden in two dimensions. Finally, using Dyson-Schwinger equations we calculate the decay of the ${U}_{A}(1)$-invariant fermion four-point function in search for a BKT phase at zero temperature.

Topics & Concepts

PhysicsMathematical physicsLattice (music)Phase diagramInverseGross–Neveu modelFermionChiral symmetry breakingChiral symmetryNambu–Jona-Lasinio modelChiral anomalyAmplitudeSymmetry breakingQuantum mechanicsPhase (matter)Quantum chromodynamicsMathematicsGeometryAcousticsQuantum Chromodynamics and Particle InteractionsCold Atom Physics and Bose-Einstein CondensatesQuantum, superfluid, helium dynamics
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