The Effect of Coupled Dark Energy on the Alignment between Dark Matter and Galaxy Distributions in Clusters
arXiv:1101.5761 · doi:10.1088/0004-637X/732/2/112
Abstract
We investigate the effects of a coupled Dark Energy (cDE) scalar field on the alignment between satellites and matter distributions in galaxy clusters. Using high-resolution N-body simulations for LCDM and cDE cosmological models, we compute the probability density distribution for the alignment angle between the satellite galaxies and underlying matter distributions, finding a difference between the two scenarios. With respect to LCDM, in cDE cosmologies the satellite galaxies are less preferentially located along the major axis of the matter distribution, possibly reducing the tension with obersevational data. A physical explanation is that the coupling between dark matter and dark energy acts as an additional tidal force on the satellite galaxies diminishing the alignments between their distribution and the matter one. Through a Wald test based on the generalized chi-square statistics, the null hypothesis that the two probability distributions come from the same parent population is rejected at the 99 % confidence level. It is concluded that the galaxy-matter alignment in clusters may provide a unique probe of dark sector interactions as well as the nature of dark energy.
Accepted for publication in ApJ, published version, all minor typos corrected, 5 figures
References in corpus (11)
- Cosmology and the Fate of Dilatation Symmetry
- Coupled and Extended Quintessence: theoretical differences and structure formation
- Signature of the interaction between dark energy and dark matter in galaxy clusters
- N-Body Simulations for Coupled Scalar Field Cosmology
- The Influence of Large-Scale Structure on Halo Shapes and Alignments
- Clarifying spherical collapse in coupled dark energy cosmologies
- Mass functions in coupled Dark Energy models
- High-z massive clusters as a test for dynamical coupled dark energy
- The latitude dependence of the rotation measures of NVSS sources
- The Impact of Coupled Dark Energy Cosmologies on the High-Redshift Intergalactic Medium
- The Misalignments between Matter and Galaxy Distributions in Triaxial Clusters: A Signature of a Possible Fifth Force?
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- Remedy of some cosmological tensions via effective phantom-like behavior of interacting vacuum energy
- Early massive clusters and the bouncing coupled dark energy
- Cosmological constraints on coupled dark energy
- Cosmological direct detection of dark energy: non-linear structure formation signatures of dark energy scattering with visible matter
- Distinguishing interacting dark energy from wCDM with CMB, lensing, and baryon acoustic oscillation data
- Simulating Momentum Exchange in the Dark Sector
- Can Coupled Dark Energy Speed Up the Bullet Cluster?
- Disentangling dark sector models using weak lensing statistics
- DM haloes in the fifth-force cosmology
- Fitting and forecasting non-linear coupled dark energy
- Effective dark energy equation of state in interacting dark energy models
- Hydrodynamical simulations of coupled and uncoupled quintessence models II: Galaxy clusters
- Expanding Universe: slowdown or speedup?
- Cosmology In Terms Of The Deceleration Parameter. Part II
- Dark Sector Coupling Bends the Superclusters
- The Spin Alignments in Galaxy Pairs as a Test of Bouncing Coupled Dark Energy
- Massive Gravity wrapped in the Cosmic Web
- Modeling the Alignment Profile of Satellite Galaxies in Clusters
- The role of Dark Matter interaction in galaxy clusters