On the Thermodynamics of NUT charged spaces
arXiv:hep-th/0408234 · doi:10.1103/PhysRevD.72.084032
Abstract
We discuss and compare at length the results of two methods used recently to describe the thermodynamics of Taub-NUT solutions in a deSitter background. In the first approach ($\mathbb{% C}$-approach), one deals with an analytically continued version of the metric while in the second approach (-approach), the discussion is carried out using the unmodified metric with Lorentzian signature. No analytic continuation is performed on the coordinates and/or the parameters that appear in the metric. We find that the results of both these approaches are completely equivalent modulo analytic continuation and we provide the exact prescription that relates the results in both methods. The extension of these results to the AdS/flat cases aims to give a physical interpretation of the thermodynamics of nut-charged spacetimes in the Lorentzian sector. We also briefly discuss the higher dimensional spaces and note that, analogous with the absence of hyperbolic nuts in AdS backgrounds, there are no spherical Taub-Nut-dS solutions.
35pages, 4 figures. v.4 references added,few typos corrected, to appear in Phys. Rev. D
References in corpus (9)
- Nut Charged Space-times and Closed Timelike Curves on the Boundary
- Breakdown of the Entropy/Area Relationship for NUT-charged Spacetimes
- New Multiply Nutty Spacetimes
- Higher Dimensional Taub-NUTs and Taub-Bolts in Einstein-Maxwell Gravity
- Entropic N-bound and Maximal Mass Conjecture Violations in Four Dimensional Taub-Bolt(NUT)-dS Spacetimes
- New Taub-NUT-Reissner-Nordström spaces in higher dimensions
- Mass, Action and Entropy of Taub-Bolt-dS Spacetimes
- Entropy and Mass Bounds of Kerr-de Sitter Spacetimes
- A Review of the N-bound and the Maximal Mass Conjectures Using NUT-Charged dS Spacetimes
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