English

Localization of Energy-Momentum for a Black Hole Spacetime Geometry with Constant Topological Euler Density

General Relativity and Quantum Cosmology 2018-10-22 v2

Abstract

The evaluation of the energy-momentum distribution for a new four-dimensional, spherically symmetric, static and charged black hole spacetime geometry with constant non-zero topological Euler density is performed by using the energy-momentum complexes of Einstein and M{\o}ller. This black hole solution was recently developed in the context of the coupled Einstein--non-linear electrodynamics of the Born-Infeld type. The energy is found to depend on the mass MM and the charge qq of the black hole, the cosmological constant Λ\Lambda and the radial coordinate rr, while in both prescriptions all the momenta vanish. Some limiting and particular cases are analyzed, illustrating the rather extraordinary character of the spacetime geometry considered.

Keywords

Cite

@article{arxiv.1807.00300,
  title  = {Localization of Energy-Momentum for a Black Hole Spacetime Geometry with Constant Topological Euler Density},
  author = {Irina Radinschi and Theophanes Grammenos and Farook Rahaman and Andromahi Spanou and Marius Mihai Cazacu and Surajit Chattopadhyay and Antonio Pasqua},
  journal= {arXiv preprint arXiv:1807.00300},
  year   = {2018}
}

Comments

15 pages, 2 figures. Present version accepted for publication in Advances in High Energy Physics