A two-mass expanding exact space-time solution
arXiv:1005.1809 · doi:10.1007/s10714-010-1081-6
Abstract
In order to understand how locally static configurations around gravitationally bound bodies can be embedded in an expanding universe, we investigate the solutions of general relativity describing a space-time whose spatial sections have the topology of a 3-sphere with two identical masses at the poles. We show that Israel junction conditions imply that two spherically symmetric static regions around the masses cannot be glued together. If one is interested in an exterior solution, this prevents the geometry around the masses to be of the Schwarzschild type and leads to the introduction of a cosmological constant. The study of the extension of the Kottler space-time shows that there exists a non-static solution consisting of two static regions surrounding the masses that match a Kantowski-Sachs expanding region on the cosmological horizon. The comparison with a Swiss-Cheese construction is also discussed.
15 pages, 5 figures. Replaced to match the published version
References in corpus (6)
- Cosmic clocks, cosmic variance and cosmic averages
- On cosmological observables in a swiss-cheese universe
- Archipelagian Cosmology: Dynamics and Observables in a Universe with Discretized Matter Content
- Errors in Estimating Omega_Lambda due to the Fluid Approximation
- From time to timescape - Einstein's unfinished revolution
- Gravitational energy as dark energy: Towards concordance cosmology without Lambda
Cited by in corpus (25)
- Deflection Angle and Shadow Behaviors of Quintessential Black Holes in arbitrary Dimensions
- What is dust? - Physical foundations of the averaging problem in cosmology
- The effect of a massive object on an expanding universe
- General relativistic polytropes with a repulsive cosmological constant
- Inhomogeneity effects in Cosmology
- An exact quantification of backreaction in relativistic cosmology
- Black Hole Universe: Time Evolution
- Black Hole Universe: Construction and Analysis of Initial Data
- Black Hole Universe with
- Dynamics of a lattice Universe
- An Improved Treatment of Optics in the Lindquist-Wheeler Models
- Discrete Newtonian Cosmology
- Light propagation in inhomogeneous and anisotropic cosmologies
- Almost Birkhoff Theorem in General Relativity
- Scalar perturbations and quasi-normal modes of a non-linear magnetic-charged black hole surrounded by quintessence
- Current-carrying string loops in black-hole spacetimes with a repulsive cosmological constant
- Back-Reaction in Relativistic Cosmology
- The theory of stochastic cosmological lensing
- Acceleration of string loops in the Schwarzschild-de Sitter geometry
- Slowly decaying resonances of massive scalar fields around Schwarzschild-de Sitter black holes
- Constraining the Variation in Fine-Structure Constant Using SDSS DR8 QSO Spectra
- Isotropic extensions of the vacuum solutions in general relativity
- Variations on Birkhoff's theorem
- An exact static two-mass solution using Nariai spacetime
- Dark matter halos modeled by polytropic spheres influenced by the relict cosmological constant and trapping polytropes forming supermassive black holes