Phase Structure of Scalarized Black Holes in Einstein-Scalar-Gauss-Bonnet Gravity

Avatar
Poster
Voice is AI-generated
Connected to paperThis paper is a preprint and has not been certified by peer review

Phase Structure of Scalarized Black Holes in Einstein-Scalar-Gauss-Bonnet Gravity

Authors

Carlos Herdeiro, Hyat Huang, Jutta Kunz, Meng-Yun Lai, Eugen Radu, De-Cheng Zou

Abstract

We revisit scalarized black holes in Einstein-scalar-Gauss-Bonnet gravity and analyze the thermodynamic phase transition between the Schwarzschild solution of general relativity and scalarized black holes. Restricting to spherically symmetric configurations, we investigate several classes of scalar-Gauss-Bonnet coupling functions. For the simplest quadratic coupling that triggers spontaneous scalarization, the scalarized solutions are thermodynamically disfavored and no phase transition occurs. For an exponential coupling, the phase structure depends strongly on the coupling parameter, allowing for the absence of a transition, a continuous second-order transition, or a discontinuous first-order transition. For couplings leading to purely nonlinear scalarization, we find either a first-order transition or no transition. These results reveal a rich phase structure of scalarized black holes controlled by the scalar-Gauss-Bonnet coupling.

Follow Us on

0 comments

Add comment