Black holes: The membrane paradigm
Abstract
The physics of black holes is explored in terms of a membrane paradigm which treats the event horizon as a two-dimensional membrane embedded in three-dimensional space. A 3+1 formalism is used to split Schwarzschild space-time and the laws of physics outside a nonrotating hole, which permits treatment of the atmosphere in terms of the physical properties of thin slices. The model is applied to perturbed slowly or rapidly rotating and nonrotating holes, and to quantify the electric and magnetic fields and eddy currents passing through a membrane surface which represents a stretched horizon. Features of tidal gravitational fields in the vicinity of the horizon, quasars and active galalctic nuclei, the alignment…
Citation impact
1,061
total citations
- FWCI
- 12.59
- Percentile
- 100%
- References
- 0
Citations per year
Authors
3Topics & keywords
Topics
Keywords
- Event horizon
- Physics
- Black hole (networking)
- Membrane paradigm
- Fuzzball
- White hole
- Schwarzschild radius
- Classical mechanics
No related works found for this paper.