Studies on Thin-shells and Thin-shell Wormholes
arXiv:1610.08118 · doi:10.13140/RG.2.1.2655.8966/1
Abstract
The study of traversable wormholes is very hot topic for the past 30 years. One of the best possible way to make traversable wormhole is using the thin-shells to cut and paste two spacetime which has tunnel from one region of space-time to another, through which a traveler might freely pass in wormhole throat. These geometries need an exotic matter which involves a stress-energy tensor that violates the null energy condition. However, this method can be used to minimize the amount of the exotic matter. The goal of this thesis study is to study on thin-shell and thin-shell wormholes in general relativity in 2+1 and 3+1 dimensions. We also investigate the stability of such objects.
77 pages, 12 figures, Ph.D Supervisor: Prof. Dr. Mustafa Halilsoy, Ph.D Thesis in Physics defended at Eastern Mediterranean University, Famagusta T.R. North Cyprus (June 2016)
References in corpus (13)
- Traversable wormholes: Some simple examples
- Tunnelling, Temperature and Taub-NUT Black Holes
- Tunneling of Vector Particles from Lorentzian Wormholes in 3+1 Dimensions
- Black hole radiation of spin-1 particles in (1+2) dimensions
- Uninformed Hawking Radiation
- General formalism for the stability of thin-shell wormholes in 2+1 dimensions
- Gravitational Lensing Effect on the Hawking Radiation of Dyonic Black Holes
- Modelling the black hole silhouette in Sgr A* with ion tori
- Collapsing thin shells with rotation
- Counterrotational effects on stability of 2+1-dimensional thin-shell wormholes
- Charged shells in a (2+1)-dimensional spacetime
- Dynamics of Dirac-Born-Infeld dark energy interacting with dark matter
- Field equations from a surface term