How unusual are the Shapley Supercluster and the Sloan Great Wall?
arXiv:1105.3378 · doi:10.1111/j.1365-2966.2011.19453.x
Abstract
We use extreme value statistics to assess the significance of two of the most dramatic structures in the local Universe: the Shapley supercluster and the Sloan Great Wall. If we assume that Shapley (volume ~ 1.2 x 10^5 (Mpc/h)^3) evolved from an overdense region in the initial Gaussian fluctuation field, with currently popular choices for the background cosmological model and the shape and amplitude sigma8 of the initial power spectrum, we estimate that the total mass of the system is within 20 percent of 1.8 x 10^16 Msun/h. Extreme value statistics show that the existence of this massive concentration is not unexpected if the initial fluctuation field was Gaussian, provided there are no other similar objects within a sphere of radius 200 Mpc/h centred on our Galaxy. However, a similar analysis of the Sloan Great Wall, a more distant (z ~ 0.08) and extended concentration of structures (volume ~ 7.2 x 10^5 (Mpc/h)^3) suggests that it is more unusual. We estimate its total mass to be within 20 percent of 1.2 x 10^17 Msun/h; even if it is the densest such object of its volume within z=0.2, its existence is difficult to reconcile with Gaussian initial conditions if sigma8 < 0.9. This tension can be alleviated if this structure is the densest within the Hubble volume. Finally, we show how extreme value statistics can be used to address the likelihood that an object like Shapley exists in the same volume which contains the Great Wall, finding, again, that Shapley is not particularly unusual. It is straightforward to incorporate other models of the initial fluctuation field into our formalism.
13 pages, 8 figures
References in corpus (12)
- The Sloan Great Wall. Morphology and galaxy content
- Alignments of Voids in the Cosmic Web
- Strong clustering of underdense regions and the environmental dependence of clustering from Gaussian initial conditions
- Future virialized structures: An analysis of superstructures in SDSS-DR7
- Perturbation theory and excursion set estimates of the probability distribution function of dark matter, and a method for reconstructing the initial distribution function
- Satellite Luminosities in Galaxy Groups
- Most massive halos with Gumbel Statistics
- Mass, Light and Colour of the Cosmic Web in the Supercluster SCL2243-0935 (z=0.447)
- The Density Contrast of the Shapley Supercluster
- Extreme value statistics of smooth random Gaussian fields
- Redshift-space limits of bound structures
- The nonlinear probability distribution function in models with local primordial non-Gaussianity
Cited by in corpus (53)
- Modified Newtonian Dynamics (MOND): Observational Phenomenology and Relativistic Extensions
- The CosmoVerse White Paper: Addressing observational tensions in cosmology with systematics and fundamental physics
- Is the Observable Universe Consistent with the Cosmological Principle?
- The 2M++ galaxy redshift catalogue
- Evidence for a ~300 Mpc Scale Under-density in the Local Galaxy Distribution
- A structure in the early universe at z ~ 1.3 that exceeds the homogeneity scale of the R-W concordance cosmology
- A Tale of Two Paradigms: the Mutual Incommensurability of LCDM and MOND
- The progeny of a Cosmic Titan: a massive multi-component proto-supercluster in formation at z=2.45 in VUDS
- Measuring cosmic bulk flows with Type Ia Supernovae from the Nearby Supernova Factory
- The 6dF Galaxy Survey: Bulk Flows on Mpc scales
- The Challenge of the Largest Structures in the Universe to Cosmology
- A Machine Learning Approach for Dynamical Mass Measurements of Galaxy Clusters
- Seeing patterns in noise: Gigaparsec-scale `structures' that do not violate homogeneity
- PRIMUS: Galaxy Clustering as a Function of Luminosity and Color at 0.2<z<1
- Multimodality of rich clusters from the SDSS DR8 within the supercluster-void network
- Cosmic troublemakers: the Cold Spot, the Eridanus Supervoid, and the Great Walls
- Discovery of a massive supercluster system at
- Shapley Supercluster Survey (ShaSS): Galaxy Evolution from Filaments to Cluster Cores
- Sloan Great Wall as a complex of superclusters with collapsing cores
- Unusual A2142 supercluster with a collapsing core: distribution of light and mass
- HectoMAP and Horizon Run 4: Dense Structures and Voids in the Real and Simulated Universe
- Saraswati: An Extremely Massive ~ 200 Megaparsec Scale Supercluster
- The Limited Accuracy of Linearized Gravity
- Mapping the Universe: The 2010 Russell Lecture
- The Corona Borealis supercluster: connectivity, collapse, and evolution
- On the influence of the environment on galactic chemical abundances
- Towards Accurate Field-Level Inference of Massive Cosmic Structures
- Predicting Structures in the Zone of Avoidance
- Dynamical spatial curvature as a fit to type Ia supernovae
- The evolution of high-density cores of the BOSS Great Wall superclusters
- Cosmological homogeneity scale estimates are dressed
- BOSS Great Wall: morphology, luminosity, and mass
- Compatibility of the Large Quasar Groups with the Concordance Cosmological Model
- New evidence and analysis of cosmological-scale asymmetry in galaxy spin directions
- A redshift database towards the Shapley Supercluster region
- General relativistic density perturbations
- The Scale of Homogeneity in the Universe
- X-ray cluster cosmology
- Quasi-spherical superclusters
- The environment-dependence of the growth of the most massive objects in the Universe
- Demonstration of the spike phenomenon using the LTB models
- The Excess Density of Field Galaxies near z=0.56 around the Gamma-Ray Burst GRB021004 Position
- Nucleation regions in the Large-Scale Structure I. A catalogue of cores in nearby rich superclusters
- Galaxy Superclusters and Their Complexes in the Cosmic Web
- The extent of gravitationally bound structure in a ΛCDM universe
- AMICO galaxy clusters in KiDS-DR3: constraints on CDM from extreme value statistics
- The influence of superstructures on bright galaxy environments: clustering properties
- The Mass Function of Dark Halos in Superclusters and Voids
- Time evolution of the mutual information between disjoint regions in the Universe
- Quantifying the Rarity of the Local Super-Volume
- Discovery of a supercluster candidate at
- A Fast and Simple Algorithm for Detecting Large Scale Structures
- The Manticore Project II: Bayesian digital twins of cosmic structure across the SDSS and BOSS volumes