Thermodynamic geometry and phase transitions of dyonic charged AdS black holes

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Abstract

We investigate phase transitions and critical phenomena of four dimensional dyonic charged AdS black holes in the framework of thermodynamic geometry. In a mixed canonical–grand canonical ensemble with a fixed electric charge and varying magnetic charge these black holes exhibit a liquid–gas like first order phase transition culminating in a second order critical point similar to the van der Waals gas. We show that the thermodynamic scalar curvature R for these black holes follow our proposed geometrical characterization of the R-crossing Method for the first order liquid–gas like phase transition and exhibits a divergence at the second order critical point. The pattern of R crossing and divergence exactly corresponds to those of a van der Waals gas described by us in an earlier work.

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Chaturvedi, P., Das, A., & Sengupta, G. (2017). Thermodynamic geometry and phase transitions of dyonic charged AdS black holes. European Physical Journal C, 77(2). https://doi.org/10.1140/epjc/s10052-017-4678-z

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