Hidden and Generalized Conformal Symmetry of Kerr-Sen Spacetimes
A. M. Ghezelbash, H. M. Siahaan

TL;DR
This paper demonstrates the hidden conformal symmetry in Kerr-Sen black holes by analyzing charged scalar wave equations, revealing dual CFT descriptions, and matching macroscopic and microscopic quantities like entropy and absorption cross sections.
Contribution
It extends the understanding of conformal symmetry in Kerr-Sen black holes and introduces an extended family of hidden conformal symmetries parameterized by a new variable.
Findings
Wave equation reproduces hidden conformal symmetry in near region
Exact agreement of entropy and absorption cross section with CFT predictions
Extension of conformal symmetry to a family parameterized by one variable
Abstract
It is recently conjectured that generic non-extremal Kerr black hole could be holographically dual to a hidden conformal field theory in two dimensions. Moreover, it is known that there are two CFT duals (pictures) to describe the charged rotating black holes which correspond to angular momentum and electric charge of the black hole. Furthermore these two pictures can be incorporated by the CFT duals (general picture) that are generated by modular group. The general conformal structure can be revealed by looking at charged scalar wave equation in some appropriate values of frequency and charge. In this regard, we consider the wave equation of a charged massless scalar field in background of Kerr-Sen black hole and show in the "near region", the wave equation can be reproduced by the Casimir operator of a local …
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