Higher Dimensional Kerr-AdS Black Holes and the AdS/CFT Correspondence
Adel M. Awad, Clifford V. Johnson

TL;DR
This paper calculates physical quantities for higher-dimensional Kerr-AdS black holes using counterterm techniques, demonstrating their correspondence with dual field theories and exploring conformal anomalies and energy relations.
Contribution
It extends the AdS/CFT correspondence to higher dimensions and rotating black holes, providing explicit calculations of stress tensors and anomalies.
Findings
Stress-energy tensor matches dual field theory in zero mass limit.
High-temperature stress tensors of black holes and field theories are proportional.
Rotation parameters break conformal invariance but preserve scale invariance.
Abstract
Using the counterterm subtraction technique we calculatehe stress-energy tensor, action, and other physical quantities for Kerr-AdS black holes in various dimensions. For Kerr-AdS_5 with both rotation parameters non-zero, we demonstrate that stress-energy tensor, in the zero mass parameter limit, is equal to the stress tensor of the weakly coupled four dimensional dual field theory. As a result, the total energy of the generalKerr-AdS_5 black hole at zero mass parameter, exactly matches the Casimir energy of the dual field theory. We show that at high temperature, the general Kerr-AdS_5 and perturbative field theory stress-energy tensors are equal, up to the usual factor of 3/4. We also use the counterterm technique to calculate the stress tensors and actions for Kerr-AdS_6, and Kerr-AdS_7 black holes, with one rotation parameter, and we display the results. We discuss the conformal…
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