String tension and Polyakov loop in a rotating background
arXiv:2410.04763 · doi:10.1103/PhysRevD.111.026020
Abstract
We study the influence of a rotation on the string tension and the temperature of the confinement-deconfinement transition of gluodynamics by gauge/gravity duality. We explore two distinct approaches, global transformation and local transformation, to introduce rotation and compare the results. It is shown that the string tension extracted from the free energy in the presence of a heavy quarkonium decreases with the increasing angular velocity, while the transition temperature determined by the Polyakov loop increases with increasing angular velocity, which is in line with lattice simulations.
23 pages, 3 figures
References in corpus (26)
- Linear Confinement and AdS/QCD
- 1/q^2 Corrections and Gauge/String Duality
- The Spatial String Tension, Thermal Phase Transition, and AdS/QCD
- Gluodynamics and deconfinement phase transition under rotation from holography
- 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
- Phase diagram of holographic thermal dense QCD matter with rotation
- Renormalized Polyakov Loop in the Deconfined Phase of SU(N) Gauge Theory and Gauge/String Duality
- Holographic drag force in 5d Kerr-AdS black hole
- Heavy quarks in rotating plasma via holography
- Inhomogeneous chiral condensation under rotation in the holographic QCD
- Holographic study of higher-order baryon number susceptibilities at finite temperature and density
- Quark-meson model under rotation: A functional renormalization group study
- Charmonium transition in electromagnetic and rotational fields
- Probing the holographic model of SYM rotating quark-gluon plasma
- Lattice study of the confinement/deconfinement transition in rotating gluodynamics
- Rotation effect on the deconfinement phase transition in holographic QCD
- Inhomogeneity of a rotating quark-gluon plasma from holography
- Bound states and electromagnetic radiation of relativistically rotating cylindrical wells
- Drag force and heavy quark potential in a rotating background
- Holographic Schwinger effect in a rotating strongly coupled medium
- Heavy quark potential and jet quenching parameter in a rotating D-instanton background
- Thermodynamics of heavy quarkonium in the spinning black hole background
- Holographic Non-local Rotating Observables and their Renormalization
- De Haas - van Alphen Effect under Rotation