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Confinement/Deconfinement temperature for a rotating quark-gluon plasma

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arxiv 2201.05581 v2 pith:DUI6MFXL submitted 2022-01-14 hep-th

Confinement/Deconfinement temperature for a rotating quark-gluon plasma

classification hep-th
keywords holographicmodelsplasmaanti-deconfinementdeconfinementgammalorentz
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Non-central heavy ion collisions lead to the production of a quark gluon plasma with angular momentum. We investigate, using holographic AdS/QCD models, how does rotation of the medium affects the confinement/deconfinement transition temperature $T_c$. In holographic models, this transition is represented by a Hawking-Page process involving two asymptotically anti-de Sitter spaces. The plasma is represented here by extending the holographic approach to anti-de Sitter spaces with cylindrical symmetry. Then, the rotation of the medium is introduced through a Lorentz boost. We consider hard and soft wall AdS/QCD models. In both cases we find it out that, as the rotational velocity $v$ increases, $T_c$ decreases, following the expression $T_c(v) = T_c(0)/\gamma(v)$, where $\gamma(v)$ is the Lorentz factor.

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Cited by 5 Pith papers

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