We continue to explore the dynamics of a heavy quark in a strongly coupled rotating quark-gluon plasma within the holographic framework. We use the 5d Kerr-AdS black hole with two arbitrary rotating parameters to describe the rotating quark-gluon plasma. We present the relations for the drag force acting on the heavy quark both in the rotating- and static-at-infinity frames for arbitrary choice of the rotational parameters. We also calculate the thermal mass of a static quark in different frames and show that at high-$T$ limit the dependence on rotation is suppressed.Comment: 28 pages, refs. to 2 SageMath notebooks; v2: clarifications added, typos corrected; corrections in Sec.5 and app; matches published version in Nucl.Phys.
AbstractThe quark chemical potential is one of the fundamental parameters describing the quark–gluon...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
We continue to explore the dynamics of a heavy quark in a strongly coupled rotating quark-gluon plas...
We study Wilson loops in holographic duals of the $\mathcal{N}=4$ SYM quark-gluon plasma. For this w...
Non-central heavy ion collisions lead to the production of a quark gluon plasma with angular momentu...
With the aim of studying rotating Quark Gluon plasma, holographically, from a top-down approach, stu...
In this paper, a theoretical calculation of thermal di-lepton production rate (DPR) is reported from...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
The quark chemical potential is one of the fundamental parameters describing the quark–gluon plasma ...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
AbstractThe quark chemical potential is one of the fundamental parameters describing the quark–gluon...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
International audienceWe continue to explore the dynamics of a heavy quark in a strongly coupled rot...
We continue to explore the dynamics of a heavy quark in a strongly coupled rotating quark-gluon plas...
We study Wilson loops in holographic duals of the $\mathcal{N}=4$ SYM quark-gluon plasma. For this w...
Non-central heavy ion collisions lead to the production of a quark gluon plasma with angular momentu...
With the aim of studying rotating Quark Gluon plasma, holographically, from a top-down approach, stu...
In this paper, a theoretical calculation of thermal di-lepton production rate (DPR) is reported from...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
The quark chemical potential is one of the fundamental parameters describing the quark–gluon plasma ...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
AbstractThe quark chemical potential is one of the fundamental parameters describing the quark–gluon...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...
We holographically study the effect of back reaction on the hydrodynamical properties of N = 4 stron...