Very large scale correlations in the galaxy distribution
arXiv:1110.4041 · doi:10.1209/0295-5075/96/59001
Abstract
We characterize galaxy correlations in the Sloan Digital Sky Survey by measuring several moments of galaxy counts in spheres. We firstly find that the average counts grows as a power-law function of the distance with an exponent D= 2.1+- 0.05 for r in [0.5,20] Mpc/h and D = 2.8+-0.05 for r in [30,150] Mpc/h. In order to estimate the systematic errors in these measurements we consider the counts variance finding that it shows systematic finite size effects which depend on the samples sizes. We clarify, by making specific tests, that these are due to galaxy long-range correlations extending up to the largest scales of the sample. The analysis of mock galaxy catalogs, generated from cosmological N-body simulations of the standard LCDM model, shows that for r<20 Mpc/h the counts exponent is D~2.0, weakly dependent on galaxy luminosity, while D=3 at larger scales. In addition, contrary to the case of the observed galaxy samples, no systematic finite size effects in the counts variance are found at large scales, a result that agrees with the absence of large scale, r~100 Mpc/h, correlations in the mock catalogs. We thus conclude that the observed galaxy distribution is characterized by correlations, fluctuations and hence structures, which are larger, both in amplitude and in spatial extension, than those predicted by the standard model LCDM of galaxy formation.
6 pages, 7 figures to be published in Europhysics Letters
References in corpus (8)
- Excess Clustering on Large Scales in the MegaZ DR7 Photometric Redshift Survey
- Absence of self-averaging and of homogeneity in the large scale galaxy distribution
- Luminous superclusters: remnants from inflation
- Power law correlations in galaxy distribution and finite volume effects from the Sloan Digital Sky Survey Data Release Four
- Gravitational energy and cosmic acceleration
- Persistent fluctuations in the distribution of galaxies from the Two degree Field Galaxy Redshift Survey
- Extension and estimation of correlations in Cold Dark Matter models
- The effect of structure formation on the expansion of the universe
Cited by in corpus (29)
- Cosmology and Fundamental Physics with the Euclid Satellite
- Cosmology and fundamental physics with the Euclid satellite
- A structure in the early universe at z ~ 1.3 that exceeds the homogeneity scale of the R-W concordance cosmology
- Homogeneity and isotropy in the 2MASS Photometric Redshift catalogue
- Exploring cosmic homogeneity with the BOSS DR12 galaxy sample
- A 14 Gpc study of cosmic homogeneity using BOSS DR12 quasar sample
- Seeing patterns in noise: Gigaparsec-scale `structures' that do not violate homogeneity
- Direct Minkowski Functional analysis of large redshift surveys: a new high--speed code tested on the luminous red galaxy Sloan Digital Sky Survey-DR7 catalogue
- Measuring the scale of cosmic homogeneity with SDSS-IV DR14 quasars
- Cosmic homogeneity: a spectroscopic and model-independent measurement
- Testing homogeneity in the Sloan Digital Sky Survey Data Release Twelve with Shannon entropy
- Measuring the cosmic homogeneity scale with SDSS-IV DR16 Quasars
- A method for testing the cosmic homogeneity with Shannon entropy
- Testing the homogeneity of the Universe using gamma-ray bursts
- Measuring the transition to homogeneity with photometric redshift surveys
- An interacting New Holographic Dark Energy in the framework of fractal cosmology
- Backreaction and FRW consistency conditions
- An information theory based search for homogeneity on the largest accessible scale
- Probing large scale homogeneity and periodicity in the LRG distribution using Shannon entropy
- Statistical measurements of dispersion measure fluctuations of FRBs
- Evaluating backreaction with the ellipsoidal collapse model
- Testing homogeneity of the galaxy distribution in the SDSS using Renyi entropy
- Model for common growth of supermassive black holes, bulges and globular star clusters: ripping off Jeans clusters
- Can the angular scale of cosmic homogeneity be used as a cosmological test?
- Single Past Null Geodesic in the Lemaitre-Tolman-Bondi Cosmology
- Cosmological constraints from cosmic homogeneity
- Measuring cosmic dipole with the GRB luminosity-time relation
- Investigation of homogeneity and matter distribution on large scales using large quasar groups
- Cosmology from LOFAR Two-metre Sky Survey Data Release 2: Counts-in-Cells Statistics