Cardy entropy of charged and rotating asymptotically AdS and Lifshitz solutions with a generalized Chern–Simons term
Bravo-Gaete M.; Cisterna A.; Hassaine M.; Kubizňák D.
We consider a three-dimensional gravity model that includes (non-linear) Maxwell and Chern-Simons-like terms, allowing for the existence of electrically charged rotating black hole solutions with a static electromagnetic potential. We verify that a Cardy-like formula, based not on central charges but on the mass of the uncharged and non-spinning soliton, obtained via a double Wick rotation of the neutral static black hole solution, accurately reproduces the Bekenstein-Hawking entropy. Furthermore, we show that a slight generalization of this model, incorporating a dilatonic field and extra gauge fields, admits charged and rotating black hole solutions with asymptotic Lifshitz behavior. The entropy of these solutions can likewise be derived using the Cardy-like formula, with the Lifshitz-type soliton serving as the ground state. Based on these results, we propose a generalized Cardylike formula that successfully reproduces the semiclassical entropy in all the studied cases.
| type: | article |
| journal: | Physics Letters B |
| volume: | 868 |
| pages: | 139721 |
| year: | 2025 |
| month: | 9 |
| eprint: | arXiv:2506.04854 |
| grants: | Černoděrové prostoročasy v obecné dimenzi, jejich vlastnosti a interpretace; 2022 - 2024; hlavní řešitel: P. KrtoušSkryté symetrie a chemie černých děr; 2023 - 2025; hlavní řešitel: D. KubizňákCentrum částicové fyziky a kosmologie; 2024 - 2030; společný projekt UNCE pracovišť ÚTF a ÚČJF |