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Black holes: The membrane paradigm

TLDR
In this article, the physics of black holes are explored in terms of a membrane paradigm which treats the event horizon as a two-dimensional membrane embedded in three-dimensional space, and a 3+1 formalism is used to split Schwarzschild space-time and the laws of physics outside a nonrotating hole.
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 of jets perpendicular to accretion disks, and the effects of black holes at the center of ellipsoidal star clusters are investigated. Attention is also given to a black hole in a binary system and the interactions of black holes with matter that is either near or very far from the event horizon. Finally, a statistical mechanics treatment is used to derive a second law of thermodynamics for a perfectly thermal atmosphere of a black hole.

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Journal ArticleDOI

The role of magnetic reconnection on jet/accretion disk systems

TL;DR: In this paper, the role of magnetic reconnection and associated heating and particle acceleration in different jet/disk accretion systems, namely young stellar objects (YSOs), microquasars, and active galactic nuclei (AGNs), was discussed.
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The structure of superposed Weyl fields

TL;DR: In this paper, the properties of four superposed static axisymmetric (Weyl) space-times are illustrated by plotting their gravitational field lines and the shapes of their event horizons.
MonographDOI

Semiclassical and Stochastic Gravity: Quantum Field Effects on Curved Spacetime

TL;DR: In this article, the authors examined the effects of quantum field processes back-reacting on the background space-time which become important near the Planck time (10-43sec).
Journal ArticleDOI

Superluminal propagation of light in gravitational field and non-causal signals

A.D. Dolgov, +1 more
- 03 Dec 1998 - 
TL;DR: In this article, it was shown that in certain reference frames photons could return to their source of origin before they were produced there, in contrast to the opposite statements made in the literature.
Journal ArticleDOI

The paradox of quantum black holes

TL;DR: The conflict between the principles of quantum mechanics and those of general relativity reached crisis proportions with the discovery that black holes have a heat content or entropy as discussed by the authors. But efforts to solve the problem have since led to profound and revolutionary new insights into the quantum structure of space-time.