Three-dimensional black holes via Noether symmetries
Document Type
Article
Publication Title
Physical Review D
Publication Date
1-4-2021
Abstract
We investigate the Noether symmetries of the Lagrangian for the stationary rotating Banados, Teitelboim, and Zanelli (BTZ)-type three-dimensional spacetimes in the f(R) theory of gravity. A detailed analysis of Noether symmetries of (2+1)-dimensional rotating BTZ-type black hole spacetime model is presented. Applying the Noether symmetry approach, the first integrals (constants of motion) for each of the Noether symmetries are obtained to look for the exact solutions. After solving the first integral equations depending on the form of the function f(R), we derived some new (2+1)-dimensional rotating BTZ-type black hole solutions. We discussed the physical implications of the derived exact solutions. The thermodynamical properties of the obtained BTZ-type black hole solutions are analyzed by making use of the mass M and the angular momentum J in terms of r±, where r+ is the event horizon and r- is the inner horizon. Further, it is shown that thermodynamic quantities obey the first law, and the Smarr-like formulas of the solutions we found are obtained.
Volume
103
Issue
2
DOI
10.1103/PhysRevD.103.024001
Recommended Citation
Camci, U. (2021). Three-dimensional black holes via Noether symmetries. Physical Review D, 103 (2) https://doi.org/10.1103/PhysRevD.103.024001
ISSN
24700010
E-ISSN
24700029