Possible structure in the GRB sky distribution at redshift two
arXiv:1401.0533 · doi:10.1051/0004-6361/201323020
Abstract
Context. Research over the past three decades has revolutionized cosmology while supporting the standard cosmological model. However, the cosmological principle of Universal homogeneity and isotropy has always been in question, since structures as large as the survey size have always been found each time the survey size has increased. Until 2013, the largest known structure in our Universe was the Sloan Great Wall, which is more than 400 Mpc long located approximately one billion light years away. Aims. Gamma-ray bursts are the most energetic explosions in the Universe. As they are associated with the stellar endpoints of massive stars and are found in and near distant galaxies, they are viable indicators of the dense part of the Universe containing normal matter. The spatial distribution of gamma-ray bursts can thus help expose the large scale structure of the Universe. Methods. As of July 2012, 283 GRB redshifts have been measured. Subdividing this sample into nine radial parts, each containing 31 GRBs, indicates that the GRB sample having 1.6 < z < 2.1 differs significantly from the others in that 14 of the 31 GRBs are concentrated in roughly 1/8 of the sky. A two-dimensional Kolmogorov-Smirnov test, a nearest-neighbour test, and a Bootstrap Point-Radius Method explore the significance of this clustering. Results. All tests used indicate that there is a statistically significant clustering of the GRB sample at 1.6 < z < 2.1. Furthermore, this angular excess cannot be entirely attributed to known selection biases, making its existence due to chance unlikely. Conclusions. This huge structure lies ten times farther away than the Sloan Great Wall, at a distance of approximately ten billion light years. The size of the structure defined by these GRBs is about 2000-3000 Mpc, or more than six times the size of the Sloan Great Wall.
accepted for publication in Astronomy & Astrophysics
References in corpus (1)
Cited by in corpus (32)
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Is the Observable Universe Consistent with the Cosmological Principle?
- Low-metallicity massive single stars with rotation. Evolutionary models applicable to I Zwicky 18
- A giant ring-like structure at 0.78<z<0.86 displayed by GRBs
- New data support the existence of the Hercules-Corona Borealis Great Wall
- First-order Cosmological Perturbations Engendered by Point-like Masses
- A Giant Arc on the Sky
- Testing Isotropic Universe Using the Gamma-Ray Burst Data of Fermi / GBM
- The clustering of gamma-ray bursts in the Hercules-Corona Borealis Great Wall: the largest structure in the Universe?
- Investigation of Redshift- and Duration-Dependent Clustering of Gamma-ray Bursts
- Some statistical remarks on the Giant GRB Ring
- Revisiting the statistical isotropy of GRB sky distribution
- Testing the anisotropy in the angular distribution of /GBM gamma-ray bursts
- Testing the homogeneity of the Universe using gamma-ray bursts
- Update on Testing the Isotropy of the Properties of Gamma-Ray Bursts
- Scalar and vector perturbations in a universe with discrete and continuous matter sources
- The cosmological star formation history from the Local Cosmological Volume of galaxies and constraints on the matter homogeneity
- An Oppositeness in the Cosmology: Distribution of the Gamma-Ray Bursts and the Cosmological Principle
- Duel of cosmological screening lengths
- Does the GRB Duration Depend on Redshift?
- Perfect fluids with as sources of scalar cosmological perturbations
- Large-scale clustering amongst Fermi blazars; evidence for axis alignments?
- Re-Examining the Evidence of the Hercules-Corona-Borealis Great Wall
- Large-scale asymmetry between clockwise and counterclockwise galaxies revisited
- The Scale of Homogeneity in the Universe
- The Two-Point Correlation Function of Gamma-ray Bursts
- The Excess Density of Field Galaxies near z=0.56 around the Gamma-Ray Burst GRB021004 Position
- Scanning the Universe for Large-Scale Structures using Gamma-Ray Bursts
- Studying the variability of the X-ray spectral parameters of high-redshift GRBs' afterglows
- Evolution of Cluster Alignments as Evidence of Large-scale Structure Formation in the Universe
- Crosstalk between DGP branes
- Reanalysing large-scale structure using an updated gamma-ray burst spatial density approach