New perspective for black hole thermodynamics in Gauss-Bonnet-Born-Infeld massive gravity
Creators
- 1. Research Institute for Astronomy and Astrophysics of Maragha (RIAAM),Maragha (Iran, Islamic Republic of)
- 2. Shiraz University, Physics Department and Biruni Observatory, College of Sciences, Shiraz (Iran, Islamic Republic of)
- 3. Lingnan Normal University, Institute of Theoretical Physics, Zhanjiang, Guangdong (China)
- 4. Shahid Beheshti University, Physics Department, Tehran (Iran, Islamic Republic of)
Description
Following an earlier study regarding Einstein-Gauss-Bonnet-massive black holes in the presence of a Born-Infeld nonlinear electromagnetic field (Hendi, arXiv:1510.00108, 2016), we study thermodynamical structure and critical behavior of these black holes through various methods in this paper. Geometrical thermodynamics is employed to give a picture regarding the phase transition of these black holes. Next, a new method is used to derive critical pressure and radius of the horizon of these black holes. In addition, Maxwell equal area law is employed to study the Van der Waals like behavior of these black holes. Moreover, the critical exponents are calculated and by using Ehrenfest equations, the type of phase transition is determined. (orig.)
Availability note (English)
Available from: http://dx.doi.org/10.1140/epjc/s10052-016-4410-4Additional details
Identifiers
Publishing Information
- Journal Title
- European Physical Journal. C, Particles and Fields (Online)
- Journal Volume
- 76
- Journal Issue
- 10
- Journal Page Range
- p. 1-14
- ISSN
- 1434-6052
INIS
- Country of Publication
- Germany
- Country of Input or Organization
- Germany
- INIS RN
- 48000202
- Subject category
- S79: ASTROPHYSICS, COSMOLOGY AND ASTRONOMY;
- Descriptors DEI
- ANALYTICAL SOLUTION; BLACK HOLES; BORN-INFELD THEORY; CRITICAL PRESSURE; CRITICAL TEMPERATURE; DIFFERENTIAL GEOMETRY; ELECTROMAGNETIC FIELDS; EQUATIONS OF STATE; FIELD EQUATIONS; FREE ENERGY; GENERAL RELATIVITY THEORY; GRAVITATION; LAGRANGIAN FIELD THEORY; METRICS; NONLINEAR PROBLEMS; PHASE SPACE; PHASE TRANSFORMATIONS; REST MASS; SPACE-TIME; SPECIFIC HEAT
- Descriptors DEC
- ENERGY; EQUATIONS; FIELD THEORIES; GEOMETRY; MASS; MATHEMATICAL SOLUTIONS; MATHEMATICAL SPACE; MATHEMATICS; PHYSICAL PROPERTIES; QUANTUM FIELD THEORY; RELATIVITY THEORY; SPACE; THERMODYNAMIC PROPERTIES; TRANSITION TEMPERATURE