Entropic destruction of heavy quarkonium in a rotating hot and dense medium from holography
arXiv:2207.06122 · doi:10.1088/1674-1137/ac814e
Abstract
Previous studies have indicated that the peak of the quarkonium entropy at the deconfinement transition can be related to the entropic force which would induce the dissociation of heavy quarkonium. In this paper, we study the entropic force in a rotating hot and dense medium using AdS/CFT correspondence. It turns out that the inclusion of angular velocity increases the entropic force thus enhancing quarkonium dissociation, while chemical potential has the same effect. Furthermore, the results imply that the quarkonium dissociates easier in rotating medium compared to static case.
7 pages, 6 figures, to be published in Chinese Physics C
References in corpus (15)
- Energy loss of a heavy quark moving through N=4 supersymmetric Yang-Mills plasma
- Drag force in AdS/CFT
- J/psi Production vs Centrality, Transverse Momentum, and Rapidity in Au+Au Collisions at sqrt(s_NN) = 200 GeV
- Angular momentum conservation in heavy ion collisions at very high energy
- The Energy of a Moving Quark-Antiquark Pair in an N=4 SYM Plasma
- Gluodynamics and deconfinement phase transition under rotation from holography
- Debye screening in strongly coupled N=4 supersymmetric Yang-Mills plasma
- A class of rotating hairy black holes in arbitrary dimensions
- Logarithmic correction in the deformed model to produce the heavy quark potential and QCD beta function
- Deconfinement as an entropic self-destruction: a solution for the quarkonium suppression puzzle?
- Entropic destruction of heavy quarkonium in non-Abelian plasma from holography
- Entropic force and real-time dynamics of holographic quarkonium in a magnetic field
- Note on Tsallis holographic dark energy in Brans-Dicke cosmology
- Entropic destruction of heavy quarkonium in heavy quark cloud
- The imaginary potential and entropic force of heavy quarkonia in strongly coupled N = 4 supersymmetric Yang-Mills plasma on the Coulomb branch