Holography and thermodynamics of 5D dilaton-gravity
Publication date
2009
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Abstract
The asymptotically-logarithmically-AdS black-hole solutions of 5D dilaton gravity with a monotonic dilaton potential are analyzed in detail. Such theories are holographically very close to pure Yang-Mills theory in four dimensions. The existence and uniqueness of black-hole solutions is shown. It is also shown that a Hawking-Page transition exists at finite temperature if and only if the potential corresponds to a confining theory. The physics of the transition matches in detail with that of deconfinement of the Yang-Mills theory. The high-temperature phase asymptotes to a free gluon gas at high temperature matching the expected behavior from asymptotic freedom. The thermal gluon condensate is calculated and shown to be crucial for the existence of a non-trivial deconfining transition. The condensate of the topological charge is shown to vanish in the deconfined phase.
Keywords
hep-th, gr-qc, hep-ph
Citation
Gürsoy, U, Kiritsis, E, Mazzanti, L & Nitti, F 2009, 'Holography and thermodynamics of 5D dilaton-gravity', Journal of High Energy Physics, vol. 05, pp. 033/1-033/111. https://doi.org/10.1088/1126-6708/2009/05/033