For a rotating plasma dual to a general Myers-Perry black hole, the confinement temperature measured by a co-rotating observer can decrease, increase, or be non-monotonic with angular velocity, depending on the angle and the ratio of the two rotation parameters.
Holographic Heavy-Ion Collisions: Analytic Solutions with Longitudinal Flow, Elliptic Flow and Vorticity
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abstract
We consider phenomenological consequences arising from simple analytic solutions for holographic heavy-ion collisions. For these solutions, early-time longitudinal flow is initially negative (inward), sizable direct, elliptic, and quadrangular flow is generated, and the average vorticity of the system is tunable by a single parameter. Despite large vorticity and angular momentum, we show that the system does not complete a single rotation.
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Frame-dependency of the confinement temperature in a strongly-coupled plasma under rotation: a holographic description
For a rotating plasma dual to a general Myers-Perry black hole, the confinement temperature measured by a co-rotating observer can decrease, increase, or be non-monotonic with angular velocity, depending on the angle and the ratio of the two rotation parameters.