Proper Size of the Visible Universe in FRW Metrics with Constant Spacetime Curvature
arXiv:1207.1332 · doi:10.1088/0264-9381/30/15/155007
Abstract
In this paper, we continue to examine the fundamental basis for the Friedmann-Robertson-Walker (FRW) metric and its application to cosmology, specifically addressing the question: What is the proper size of the visible universe? There are several ways of answering the question of size, though often with an incomplete understanding of how far light has actually traveled in reaching us today from the most remote sources. The difficulty usually arises from an inconsistent use of the coordinates, or an over-interpretation of the physical meaning of quantities such as the so-called proper distance R(t)=a(t)r, written in terms of the (unchanging) co-moving radius r and the universal expansion factor a(t). In this paper, we use the five non-trivial FRW metrics with constant spacetime curvature (i.e., the static FRW metrics, but excluding Minkowski) to prove that in static FRW spacetimes in which expansion began from an initial signularity, the visible universe today has a proper size equal to R_h(t_0/2), i.e., the gravitational horizon at half its current age. The exceptions are de Sitter and Lanczos, whose contents had pre-existing positions away from the origin. In so doing, we confirm earlier results showing the same phenomenon in a broad range of cosmologies, including LCDM, based on the numerical integration of null geodesic equations through an FRW metric.
Accepted for publication in Classical and Quantum Gravity
References in corpus (6)
- Cosmic Chronometers in the R_h=ct Universe
- Biaxially symmetric solutions to 4D higher-spin gravity
- High-z Quasars in the R_h=ct Universe
- Fitting the Union2.1 SN Sample with the R_h=ct Universe
- Constraints on the Topology of the Universe: Extension to General Geometries
- Interpretation of the Cosmological Metric
Cited by in corpus (18)
- The Zero Active Mass Condition in Friedmann-Robertson-Walker Cosmologies
- The Apparent (Gravitational) Horizon in Cosmology
- On Recent Claims Concerning the R_h=ct Universe
- Angular Correlation of the CMB in the R_h=ct Universe
- and the eternal coasting cosmological model
- The Cosmic Equation of State
- A Solution to the electroweak horizon problem in the R_h=ct universe
- The Maximum Angular-Diameter Distance in Cosmology
- Thermodynamics of the R_h=ct Universe: A Simplification of Cosmic Entropy
- Missing large-angle correlations versus even-odd point-parity imbalance in the cosmic microwave background
- Exact Geodesic Distances in FLRW Spacetimes
- Nonstandard approach to gravity for the dark sector of the Universe
- The Origin of Rest-mass Energy
- Model Selection based on the Angular-Diameter Distance to the Compact Structure in Radio Quasars
- Cosmological Perturbations without Inflation
- The Electroweak Horizon Problem
- High Performance Algorithms for Quantum Gravity and Cosmology
- Holographic dark energy in a coasting cosmology