Mass formulae and staticity condition for dark matter charged black holes
arXiv:2009.11466 · doi:10.1140/epjc/s10052-020-08432-7
Abstract
The Arnowitt-Deser-Misner formalism is used to derive variations of mass, angular momentum and canonical energy for Einstein-Maxwell {\it dark matter} gravity in which the auxiliary gauge field coupled via kinetic mixing term to the ordinary Maxwell one, which mimics properties of {\it hidden sector}. Inspection of the initial data for the manifold with an interior boundary, having topology of , enables us to find the generalised first law of black hole thermodynamics in the aforementioned theory. It has been revealed that the stationary black hole solution being subject to the condition of encompassing a bifurcate Killing horizon with a bifurcation sphere, which is non-rotating, must be static and has vanishing {\it magnetic} Maxwell and {\it dark matter} sector fields, on static slices of the spacetime under consideration.
21 pages, to be published in European Physical Journal C
References in corpus (10)
- Search for a dark photon in e+e- collisions at BABAR
- The non-gravitational interactions of dark matter in colliding galaxy clusters
- Search for ultralight scalar dark matter with atomic spectroscopy
- SENSEI: Direct-Detection Constraints on Sub-GeV Dark Matter from a Shallow Underground Run Using a Prototype Skipper-CCD
- Search for invisible decays of sub-GeV dark photons in missing-energy events at the CERN SPS
- Illuminating the Hidden Sector of String Theory by Shining Light through a Magnetic Field
- A filament of dark matter between two clusters of galaxies
- An experiment to search for dark matter interactions using sodium iodide detectors
- Particle dark matter searches outside the Local Group
- Detecting dark photon dark matter with Gaia-like astrometry observations