The Splitting of Chiral and Deconfinement Phase Transitions induced by Rotation
arXiv:2307.14402 · doi:10.1103/PhysRevD.108.096007
Abstract
The chiral and deconfinement phase transitions under rotation have been simultaneously investigated in the Polyakov-Nambu-Jona-Lasinio (PNJL) model. An interesting observation has been found that the chiral phase transition is catalyzed and the deconfinement phase transition is decelerated by rotation, therefore a chiral symmetric but confined phase is induced by rotation, which indicates that chiral dynamics and gluon dynamics can be split by rotation.
9 pages, 5 figures
References in corpus (31)
- Charge separation induced by P-odd bubbles in QCD matter
- Angular momentum conservation in heavy ion collisions at very high energy
- Testing the chiral magnetic and chiral vortical effects in heavy ion collisions
- Phase diagram and critical endpoint for strongly-interacting quarks
- Flow Vorticity in Peripheral High Energy Heavy Ion Collisions
- Interacting fermions in rotation: chiral symmetry restoration, moment of inertia and thermodynamics
- Gluodynamics and deconfinement phase transition under rotation from holography
- Boundary effects and gapped dispersion in rotating fermionic matter
- Influence of relativistic rotation on the confinement/deconfinement transition in gluodynamics
- Inhomogeneous confining-deconfining phases in rotating plasmas
- Deconfining Phase Boundary of Rapidly Rotating Hot and Dense Matter and Analysis of Moment of Inertia
- Baryon number fluctuations at finite temperature and density
- Phase diagram of holographic thermal dense QCD matter with rotation
- Inhomogeneity of rotating gluon plasma and Tolman-Ehrenfest law in imaginary time: lattice results for fast imaginary rotation
- Fluctuations and Correlations of Conserved Charges near the QCD Critical Point
- Inverse magneto-rotational catalysis and the phase diagram of a rotating hot and magnetized quark matter
- Perturbative confinement in thermal Yang-Mills theories induced by imaginary angular velocity
- Heavy quarks in rotating plasma via holography
- Polarization and Splitting Induced by Rotation and Magnetic Field
- The dynamical holographic QCD method for hadron physics and QCD matter
- Inhomogeneous chiral condensation under rotation in the holographic QCD
- Phase diagram and compact stars in a holographic QCD model
- Pair-Breaking in Rotating Fermi Gases
- Holographic study of higher-order baryon number susceptibilities at finite temperature and density
- Deconfinement Temperature of Rotating QGP at Intermediate Coupling from -Theory
- Quark-meson model under rotation: A functional renormalization group study
- Thermal phase transitions in rotating QCD with dynamical quarks
- Probing the holographic model of SYM rotating quark-gluon plasma
- Chiral phase transition of a dense, magnetized and rotating quark matter
- Higher-order ratios of baryon number cumulants
- Holographic Non-local Rotating Observables and their Renormalization
Cited by in corpus (15)
- Phase structure and critical phenomena in 2-flavor QCD by holography
- New mixed inhomogeneous phase in vortical gluon plasma: first-principle results from rotating SU(3) lattice gauge theory
- Negative Barnett effect, negative moment of inertia of gluon plasma and thermal evaporation of chromomagnetic condensate
- Inhomogeneous confinement and chiral symmetry breaking induced by imaginary angular velocity
- Inhibition of splitting of the chiral and deconfinement transition due to rotation in QCD: the phase diagram of linear sigma model coupled to Polyakov loop
- Chiral symmetry breaking in accelerating and rotating frames
- Chiral phase transition and spin alignment of vector mesons with chiral imbalance in a rotating QCD medium
- Chiral and deconfinement transitions in spin-polarized quark matter
- Chiral and deconfinement thermal transitions at finite quark spin polarization in lattice QCD simulations
- On the origin of mixed inhomogeneous phase in vortical gluon plasma
- Firewall boundaries and mixed phases of rotating quark matter in linear sigma model
- Shear Viscosity and Electrical Conductivity of Rotating Nuclear Medium in Hadron Resonance Gas and Nambu-Jona Lasinio Models
- Shear viscosity and electrical conductivity of rotating quark matter in Nambu--Jona-Lasinio Model
- Dirac fermions under imaginary rotation
- The Static Heavy Quark-Antiquark Potential within String Theory in Arbitrary Stationary Backgrounds