Drag force and heavy quark potential in a rotating background
Author:
Jun-Xia Chen, De-Fu Hou, Hai-Cang Ren
Keyword:
High Energy Physics - Phenomenology, High Energy Physics - Phenomenology (hep-ph), High Energy Physics - Theory (hep-th)
journal:
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date:
2023-08-15 16:00:00
Abstract
We explored the gravity dual of the rotating quark-gluon plasma by transforming the boundary coordinates of the Schwarzschild-$AdS_5$ metric. The Euler-Lagrange equation of the Nambu-Goto action and its solution become more complex than those without rotation. For small angular velocity, we obtained an analytical form of the drag force acting on a quark moving in the direction of the rotation axis and found it stronger than that without rotation. We also calculated the heavy quark potential under the same approximation. For the quarkonium symmetric with respect to the rotation axis, the depth of the potential is reduced by the rotation. For the quarkonium oriented in parallel to the rotation axis, the bind force is weakened and the force range becomes longer. We also compared our holographic formulation with others in the literature.