Inhomogeneous chiral condensation under rotation in the holographic QCD
arXiv:2208.05668 · doi:10.1103/PhysRevD.106.106002
Abstract
We investigate inhomogeneous chiral condensation under rotation considering finite size effects and boundary conditions in the holographic QCD model. The rotational suppression effect determined by is confirmed in the holographic model which is not influenced by the boundary conditions. For chiral condensation at the center, it is found that under Neumann boundary condition the finite size exhibits two opposite effects, i.e., catalysis at high temperatures and inverse catalysis at low temperatures. In contrast, under Dirichlet boundary condition, the effect of finite size on condensation is inverse catalysis, and small size induces a phase transition from inhomogeneous to homogeneous phase. The temperature-angular velocity phase diagrams of QCD are obtained for different boundary conditions and sizes, and it is found that the critical temperature decreases with angular velocity.
References in corpus (21)
- Exact evolution equation for the effective potential
- Linear Confinement and AdS/QCD
- Charge separation induced by P-odd bubbles in QCD matter
- Exploring improved holographic theories for QCD: Part II
- Angular momentum conservation in heavy ion collisions at very high energy
- Mimicking the QCD equation of state with a dual black hole
- Thermodynamics and bulk viscosity of approximate black hole duals to finite temperature quantum chromodynamics
- Testing the chiral magnetic and chiral vortical effects in heavy ion collisions
- A holographic critical point
- Light Hadron Masses from Lattice QCD
- Interacting fermions in rotation: chiral symmetry restoration, moment of inertia and thermodynamics
- Boundary effects and gapped dispersion in rotating fermionic matter
- Inhomogeneous confining-deconfining phases in rotating plasmas
- Thermal entropy of a quark-antiquark pair above and below deconfinement from a dynamical holographic QCD model
- Inhomogeneous Structures in Holographic Superfluids: II. Vortices
- A Refined Holographic QCD Model and QCD Phase Structure
- A class of rotating hairy black holes in arbitrary dimensions
- Modeling Finite-Volume Effects and Chiral Symmetry Breaking in Two-Flavor QCD Thermodynamics
- Angular Momentum in QGP Holography
- Volume dependence of baryon number cumulants and their ratios
- Phase Transition of Finite Size Quark Droplets with Isospin Chemical Potential in the Nanbu--Jona-Lasinio Model