Dark energy domination in the Virgocentric flow
arXiv:1006.0555 · doi:10.1051/0004-6361/201014912
Abstract
The standard \LambdaCDM cosmological model implies that all celestial bodies are embedded in a perfectly uniform dark energy background, represented by Einstein's cosmological constant, and experience its repulsive antigravity action. Can dark energy have strong dynamical effects on small cosmic scales as well as globally? Continuing our efforts to clarify this question, we focus now on the Virgo Cluster and the flow of expansion around it. We interpret the Hubble diagram, from a new database of velocities and distances of galaxies in the cluster and its environment, using a nonlinear analytical model which incorporates the antigravity force in terms of Newtonian mechanics. The key parameter is the zero-gravity radius, the distance at which gravity and antigravity are in balance. Our conclusions are: 1. The interplay between the gravity of the cluster and the antigravity of the dark energy background determines the kinematical structure of the system and controls its evolution. 2. The gravity dominates the quasi-stationary bound cluster, while the antigravity controls the Virgocentric flow, bringing order and regularity to the flow, which reaches linearity and the global Hubble rate at distances \ga 15 Mpc. 3. The cluster and the flow form a system similar to the Local Group and its outflow. In the velocity-distance diagram, the cluster-flow structure reproduces the group-flow structure with a scaling factor of about 10; the zero-gravity radius for the cluster system is also 10 times larger. The phase and dynamical similarity of the systems on the scales of 1-30 Mpc suggests that a two-component pattern may be universal for groups and clusters: a quasi-stationary bound central component and an expanding outflow around it, due to the nonlinear gravity-antigravity interplay with the dark energy dominating in the flow component.
7 pages, 2 figures, Astronomy and Astrophysics (accepted)
References in corpus (11)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- The Hubble Constant: A Summary of the HST Program for the Luminosity Calibration of Type Ia Supernovae by Means of Cepheids
- Tip of the Red Giant Branch Distances. I. Optimization of a Maximum Likelihood Algorithm
- The Hubble flow around the Local Group
- Astrophysical Configurations with Background Cosmology: Probing Dark Energy at Astrophysical Scales
- Non-Friedmann cosmology for the Local Universe, significance of the universal Hubble constant and short-distance indicators of dark energy
- The Local Hubble Flow: Is it a Manifestation of Dark Energy?
- The Hubble diagram for a system within dark energy: the location of the zero-gravity radius and the global Hubble rate
- Local dark energy: HST evidence from the vicinity of the M 81/M 82 galaxy group
- Dark Energy and the mass of galaxy clusters
- The origin of redshift asymmetries: How LambdaCDM explains anomalous redshift
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- Bounding the Cosmological Constant using Galactic Rotation Curves from the SPARC Dataset
- Local dark energy in the Sculptor Filament of galaxies
- The effects of a non-zero cosmological constant on the Veltmann models