Hubble Diagram Dispersion From Large-Scale Structure
arXiv:0902.0726 · doi:10.1111/j.1365-2966.2009.15616.x
Abstract
We consider the effects of large structures in the Universe on the Hubble diagram. This problem is treated non-linearly by considering a Swiss Cheese model of the Universe in which under-dense voids are represented as negatively curved regions of space-time. Exact expressions for luminosity distances and redshifts are used to investigate the non-linear effects of structure on the magnitudes of astrophysical sources. It is found that the intervening voids we consider, between the observer and source, produce changes in apparent magnitude of less than 0.012. Sources inside voids, however, can be affected considerably at redshifts below z~0.5. By averaging observable quantities over many randomly generated distributions of voids we find that the presence of these structures has the effect of introducing a dispersion around the mean, which itself can be displaced the background value. Observers in an inhomogeneous universe, who take averages of observables along many different lines of sight, may then introduce systematic biases, and under-estimate errors, if these effects are not taken into account. Estimates of the potential size of these effects are made using data from simulated large-scale structure.
16 pages, 26 figures. Major corrections
References in corpus (15)
- Consistently Large Cosmic Flows on Scales of 100 Mpc/h: a Challenge for the Standard LCDM Cosmology
- An Imprint of Super-Structures on the Microwave Background due to the Integrated Sachs-Wolfe Effect
- Confronting Lemaitre-Tolman-Bondi models with Observational Cosmology
- On cosmological observables in a swiss-cheese universe
- Local Voids as the Origin of Large-angle Cosmic Microwave Background Anomalies I
- Living in a Void: Testing the Copernican Principle with Distant Supernovae
- "Swiss-Cheese" Inhomogeneous Cosmology & the Dark Energy Problem
- Nonlinear Structure Formation and "Apparent" Acceleration: an Investigation
- The Effect of Large-Scale Inhomogeneities on the Luminosity Distance
- Light Propagation and Large-Scale Inhomogeneities
- Luminosity distance in "Swiss cheese" cosmology with randomized voids: I. Single void size
- Testing the Copernican Principle via Cosmological Observations
- On Modelling a Relativistic Hierarchical (Fractal) Cosmology by Tolman's Spacetime. I. Theory
- Large-scale fluctuations in the distribution of galaxies from the Two Degree Field Galaxy Redshift Survey
- Persistent fluctuations in the distribution of galaxies from the Two degree Field Galaxy Redshift Survey
Cited by in corpus (32)
- Does the growth of structure affect our dynamical models of the universe? The averaging, backreaction and fitting problems in cosmology
- (Mis-)Interpreting supernovae observations in a lumpy universe
- The kSZ effect as a test of general radial inhomogeneity in LTB cosmology
- Interpretation of the Hubble diagram in a nonhomogeneous universe
- Can all cosmological observations be accurately interpreted with a unique geometry?
- On the Bias of the Distance-Redshift Relation from Gravitational Lensing
- How does the cosmic large-scale structure bias the Hubble diagram?
- Ricci focusing, shearing, and the expansion rate in an almost homogeneous Universe
- On light propagation in Swiss-Cheese cosmologies
- Redshift and distances in a ΛCDM cosmology with non-linear inhomogeneities
- Local and non-local measures of acceleration in cosmology
- Swiss-cheese models and the Dyer-Roeder approximation
- Cosmology Without Averaging
- Light propagation in Swiss cheese models of random close-packed Szekeres structures: Effects of anisotropy and comparisons with perturbative results
- The effect of inhomogeneities on the distance to the last scattering surface and the accuracy of the CMB analysis
- Towards statistically homogeneous and isotropic perfect fluid universes with cosmic backreaction
- Studying the precision of ray tracing techniques with Szekeres models
- Ray tracing and Hubble diagrams in post-Newtonian cosmology
- Effect of inhomogeneities on high precision measurements of cosmological distances
- The theory of stochastic cosmological lensing
- Intrinsic uncertainty on the nature of dark energy
- The Local Value of in an Inhomogeneous Universe
- The Lindquist-Wheeler formulation of lattice universes
- Luminosity distance in Swiss cheese cosmology with randomized voids. II. Magnification probability distributions
- Cosmic backreaction and the mean redshift drift from symbolic regression
- Regge calculus models of closed lattice universes
- Theoretical and numerical perspectives on cosmic distance averages
- On the relationship between mean observations, spatial averages and the Dyer-Roeder approximation in Einstein-Straus models
- Luminosity distance in Swiss cheese cosmology with randomized voids and galaxy halos
- CMB seen through random Swiss Cheese
- Light path averages in spacetimes with non-vanishing average spatial curvature
- Hubble Diagrams in Statistically Homogeneous, Anisotropic Universes