Clues on void evolution I: Large scale galaxy distributions around voids
arXiv:1306.5798 · doi:10.1093/mnras/stt1097
Abstract
We perform a statistical study focused on void environments. We examine galaxy density profiles around voids in the SDSS, finding a correlation between void--centric distance to the shell of maximum density and void radius when a maximum in overdensity exists. We analyze voids with and without a surrounding over-dense shell in the SDSS. We find that small voids are more frequently surrounded by over-dense shells whereas the radial galaxy density profile of large voids tends to rise smoothly towards the mean galaxy density. We analyse the fraction of voids surrounded by overdense shells finding a continuous trend with void radius. The differences between voids with and without an overdense shell around them can be understood in terms of whether the voids are, on average, in the process of collapsing or continuing their expansion, respectively, in agreement with previous theoretical expectations. We use numerical simulations coupled to semi-analytic models of galaxy formation in order to test and interpret our results. The very good agreement between the mock catalog results and the observations provides additional support to the viability of a LCDM model to reproduce the large scale structure of the universe as defined by the void network, in a way which has not been analysed previously.
Accepted for Publication in MNRAS, 9 pages, 7 figures
References in corpus (9)
- Properties of Dark Matter Haloes in Clusters, Filaments, Sheets and Voids
- ZOBOV: a parameter-free void-finding algorithm
- The Evolution of Dark Matter Halo Properties in Clusters, Filaments, Sheets and Voids
- The Aspen--Amsterdam Void Finder Comparison Project
- The darkness that shaped the void: dark energy and cosmic voids
- The flip-side of galaxy formation: A combined model of Galaxy Formation and Cluster Heating
- Alignments of Voids in the Cosmic Web
- Large-scale modulation of star formation in void walls
- Properties of Voids in the 2dFGRS Galaxy Survey
Cited by in corpus (72)
- Universal Density Profile for Cosmic Voids
- Testing Gravity using Cosmic Voids
- Probing cosmology and gravity with redshift-space distortions around voids
- First measurement of gravitational lensing by cosmic voids in SDSS
- Cosmic Voids and Void Lensing in the Dark Energy Survey Science Verification Data
- Cosmology with Void-Galaxy Correlations
- Redshift-space distortions around voids
- Sparse sampling, galaxy bias, and voids
- Voids in the SDSS DR9: observations, simulations, and the impact of the survey mask
- A Cosmic Void Catalog of SDSS DR12 BOSS Galaxies
- The star formation activity in cosmic voids
- On the linearity of tracer bias around voids
- Testing cosmology with a catalogue of voids in the BOSS galaxy surveys
- The nature of voids: II. Tracing underdensities with biased galaxies
- Self-similarity and universality of void density profiles in simulation and SDSS data
- On the relative bias of void tracers in the Dark Energy Survey
- The cosmic web of the Local Universe: cosmic variance, matter content and its relation to galaxy morphology
- Testing cosmic geometry without dynamic distortions using voids
- Redshift-space effects in voids and their impact on cosmological tests. Part I: the void size function
- Clues on void evolution III: Structure and dynamics in void shells
- Dark matter voids in the SDSS galaxy survey
- The life and death of cosmic voids
- The view from the boundary: a new void stacking method
- Baryon effects on void statistics in the EAGLE simulation
- Revealing the properties of void galaxies and their assembly using the EAGLE simulation
- Combining FOF and halo-based algorithms for the identification of galaxy groups
- Clustering and Bias Measurements of SDSS Voids
- The Gravitational Lensing Signatures of BOSS Voids in the Cosmic Microwave Background
- The sparkling Universe: the coherent motions of cosmic voids
- Updated void catalogs of the SDSS DR7 main sample
- The VIMOS Public Extragalactic Redshift Survey - Searching for Cosmic Voids
- Non-fiducial cosmological test from geometrical and dynamical distortions around voids
- Detection and analysis of cluster-cluster filaments
- How galaxies populate haloes in very low-density environments? An analysis of the Halo Occupation Distribution in cosmic voids
- The galaxy population in cold and warm dark matter cosmologies
- Morphological Segregation in the Surroundings of Cosmic Voids
- The Galaxy Population In Voids: Are All Voids The Same?
- Local and large-scale effects on the astrophysics of void-galaxies
- Testing Gravity With Scale Dependent Cosmic Void Velocity Profiles
- Structure and dynamics in low density regions: galaxy-galaxy correlations inside cosmic voids
- How do galaxies populate halos in extreme density environments? An analysis of the Halo Occupation Distribution in SDSS
- Identification of Cosmic Voids as Massive Cluster Counterparts
- The sparkling Universe: a scenario for cosmic void motions
- Separate Universe Void Bias
- The sparkling Universe: Clustering of voids and void clumps
- Void Galaxy Distribution: A Challenge for CDM
- Voids and Superstructures: correlations and induced large-scale velocity flows
- Hickson-like compact groups inhabiting different environments
- Morphologies of galaxies within voids
- Imprints of the cosmic void evolution on the baryon processes inside galaxy haloes
- Challenges in Constraining Gravity with Cosmic Voids
- Structure in the 3D Galaxy Distribution: II. Voids and Watersheds of Local Maxima and Minima
- Imprints of decaying dark matter on cosmic voids
- Universal void density profiles from simulation and SDSS
- Evolution of density and velocity profiles of dark matter and dark energy in spherical voids
- Probing supervoids with weak lensing
- Unveiling the Universe with Emerging Cosmological Probes
- Bayesian large-scale structure inference and cosmic web analysis
- The galaxy bias profile of cosmic voids
- A Simple Gravitational Lens Model For Cosmic Voids
- Spin alignment around TNG300-1 voids
- Extended Void Merging Tree Algorithm for Self-Similar Models
- Embedded Lensing Time Delays, the Fermat Potential, and the Integrated Sachs-Wolfe Effect
- Galaxy Pairs in Cosmic Voids
- Tensor anisotropy as a tracer of cosmic voids
- Spatial correlations of extended cosmological structures
- Constraining decaying dark matter models with gravitational lensing and cosmic voids
- The invariance of group occupation across the cosmic web
- Probing the integrated Sachs-Wolfe effect using embedded lens models
- Analysis of Cosmological Generalized Reduced Void Probability Functions Constrained by Observations and Numerical Simulations
- Cosmic voids and BAO with relative baryon-CDM perturbations
- Mapping the cosmic mass distribution with stacked weak gravitational lensing and Doppler lensing