Imaginary Rotating Gluonic Matter at Strong Coupling
arXiv:2506.03560 · doi:10.1016/j.physletb.2025.139716
Abstract
We write down an effective theory of the Polyakov loop to investigate the deconfinement phase transition of imaginary-rotating gluonic matter using the strong-coupling expansion. We find the strength of the nearest-neighbor Polyakov-loop interaction modified by the sum of contributions involving the chair-type loops along the temporal direction. Our results show that the deconfinement transition temperature increases with increasing imaginary angular velocity, which agrees with the predictions from the models and the high-temperature perturbative calculations.
17 pages, 6 figures
References in corpus (13)
- Global hyperon polarization in nuclear collisions: evidence for the most vortical fluid
- Relativistic distribution function for particles with spin at local thermodynamical equilibrium
- Polyakov loop modeling for hot QCD
- Lattice QCD in rotating frames
- The lattice QCD phase diagram in and away from the strong coupling limit
- Influence of relativistic rotation on the confinement/deconfinement transition in gluodynamics
- Deconfining Phase Boundary of Rapidly Rotating Hot and Dense Matter and Analysis of Moment of Inertia
- Inhomogeneity of rotating gluon plasma and Tolman-Ehrenfest law in imaginary time: lattice results for fast imaginary rotation
- Phase diagram at finite temperature and quark density in the strong coupling limit of lattice QCD for color SU(3)
- Deconfinement Temperature of Rotating QGP at Intermediate Coupling from -Theory
- Rotating gluon system and confinement
- Deconfinement transition in the revolving bag model
- Inhomogeneous confinement and chiral symmetry breaking induced by imaginary angular velocity
Cited by in corpus (4)
- Chiral symmetry breaking in accelerating and rotating frames
- Chromomagnetic Condensate in Finite-Temperature SU(2) Yang-Mills Theory under Imaginary Rotation
- Unraveling the effect of rotation on the confinement/deconfinement transition of the quark-gluon plasma
- Susceptibilities of rotating quark matter in Fourier-Bessel basis