Redshift and luminosity evolution of the intrinsic alignments of galaxies in Horizon-AGN
arXiv:1602.08373 · doi:10.1093/mnras/stw1409
Abstract
Intrinsic galaxy shape and angular momentum alignments can arise in cosmological large-scale structure due to tidal interactions or galaxy formation processes. Cosmological hydrodynamical simulations have recently come of age as a tool to study these alignments and their contamination to weak gravitational lensing. We probe the redshift and luminosity evolution of intrinsic alignments in Horizon-AGN between z=0 and z=3 for galaxies with an r-band absolute magnitude of <-20. Alignments transition from being radial at low redshifts and high luminosities, dominated by the contribution of ellipticals, to being tangential at high redshift and low luminosities, where discs dominate the signal. This cannot be explained by the evolution of the fraction of ellipticals and discs alone: intrinsic evolution in the amplitude of alignments is necessary. The alignment amplitude of elliptical galaxies alone is smaller in amplitude by a factor of ~2, but has similar luminosity and redshift evolution as in current observations and in the nonlinear tidal alignment model at projected separations of > 1 Mpc. Alignments of discs are null in projection and consistent with current low redshift observations. The combination of the two populations yields an overall amplitude a factor of ~4 lower than observed alignments of luminous red galaxies with a steeper luminosity dependence. The restriction on accurate galaxy shapes implies that the galaxy population in the simulation is complete only to an r-band absolute magnitude of <-20. Higher resolution simulations will be necessary to avoid extrapolation of the intrinsic alignment predictions to the range of luminosities probed by future surveys.
23 pages, 17 figures, changes matching version accepted by MNRAS
References in corpus (24)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Intrinsic galaxy alignments from the 2SLAQ and SDSS surveys: luminosity and redshift scalings and implications for weak lensing surveys
- Sunrise: Polychromatic Dust Radiative Transfer in Arbitrary Geometries
- On the onset of galactic winds in quiescent star forming galaxies
- Density profiles of galaxy groups and clusters from SDSS galaxy-galaxy weak lensing
- Constraints on intrinsic alignment contamination of weak lensing surveys using the MegaZ-LRG sample
- Intrinsic alignments of SDSS-III BOSS LOWZ sample galaxies
- Tidal alignment of galaxies
- Intrinsic alignments of galaxies in the Horizon-AGN cosmological hydrodynamical simulation
- The alignment and shape of dark matter, stellar, and hot gas distributions in the EAGLE and cosmo-OWLS simulations
- The impact of intrinsic alignment on current and future cosmic shear surveys
- Galaxy Shapes and Intrinsic Alignments in The MassiveBlack-II Simulation
- The removal of shear-ellipticity correlations from the cosmic shear signal via nulling techniques
- Intrinsic alignment of simulated galaxies in the cosmic web: implications for weak lensing surveys
- MegaZ-LRG: A photometric redshift catalogue of one million SDSS Luminous Red Galaxies
- Mergers drive spin swings along the cosmic web
- Intrinsic alignments of galaxies in the MassiveBlack-II simulation: analysis of two-point statistics
- Intrinsic alignments of galaxies in the EAGLE and cosmo-OWLS simulations
- Intrinsic alignments of BOSS LOWZ galaxies II: Impact of shape measurement methods
- Deriving star formation histories from photometry using energy balance spectral energy distribution modelling
- Investigating Galaxy-Filament Alignments in Hydrodynamic Simulations using Density Ridges
- Contamination of early-type galaxy alignments to galaxy lensing-CMB lensing cross-correlation
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- Dark Energy Survey Year 1 Results: Cosmological Constraints from Cosmic Shear
- The Horizon-AGN simulation: evolution of galaxy properties over cosmic time
- Beyond linear galaxy alignments
- COSMOS2015 photometric redshifts probe the impact of filaments on galaxy properties
- Galaxy orientation with the cosmic web across cosmic time
- An EFT description of galaxy intrinsic alignments
- Intrinsic Alignments of Galaxies in the Illustris Simulation
- Galaxy-halo alignments in the Horizon-AGN cosmological hydrodynamical simulation
- Multitracing Anisotropic Non-Gaussianity with Galaxy Shapes
- Advances in Constraining Intrinsic Alignment Models with Hydrodynamic Simulations
- Galaxy imaging surveys as spin-sensitive detector for cosmological colliders
- Shapes and alignments of dark matter haloes and their brightest cluster galaxies in 39 strong lensing clusters
- Time evolution of intrinsic alignments of galaxies
- Intrinsic alignment of redMaPPer clusters: cluster shape - matter density correlation
- Galaxy shape statistics in the effective field theory
- Full-sky ray-tracing simulation of weak lensing using ELUCID simulations: exploring galaxy intrinsic alignment and cosmic shear correlations
- Weak lensing in the Horizon-AGN simulation lightcone. Small scale baryonic effects
- Halo intrinsic alignment: dependence on mass, formation time and environment
- Projected alignment of non-sphericities of stellar, gas, and dark matter distributions in galaxy clusters: analysis of the Horizon-AGN simulation
- Machine Learning methods to estimate observational properties of galaxy clusters in large volume cosmological N-body simulations
- Angular ellipticity correlations in a composite alignment model for elliptical and spiral galaxies and inference from weak lensing
- The impact of AGN feedback on galaxy intrinsic alignments in the Horizon simulations
- Field-level inference of galaxy intrinsic alignment from the SDSS-III BOSS survey
- Impact of Baryonic Physics on Intrinsic Alignments
- An Optimal Estimator of Intrinsic Alignments for Star-forming Galaxies in IllustrisTNG Simulation
- First Evidence of Intrinsic Alignments of Red Galaxies at : Cross-correlation between CFHTLenS and FastSound Samples
- KiDS-1000: cross-correlation with Planck cosmic microwave background lensing and intrinsic alignment removal with self-calibration
- Measuring alignments between galaxies and the cosmic web at using IGM tomography
- Intrinsic and extrinsic correlations of galaxy shapes and sizes in weak lensing data
- The impact of Self-Interacting Dark Matter on the Intrinsic Alignments of Galaxies
- Analysis method for 3D power spectrum of projected tensor field with fast estimator and window convolution modelling: an application to intrinsic alignments
- Toward a Physical Understanding of Galaxy-Halo Alignment
- Mass Dependence of Galaxy-Halo Alignment in LOWZ and CMASS
- Merger Effects on the Spin and Shape Alignments of Galaxy Stellar, Cold and Hot Gas, and Dark Matter Components
- Testing the Impact of Satellite Anisotropy on Large and Small Scale Intrinsic Alignments using Hydrodynamical Simulations
- When galaxies align: intrinsic alignments of the progenitors of elliptical galaxies in the Horizon-AGN simulation
- The alignment of galaxies at the Baryon Acoustic Oscillation scale
- Cosmological evolution of orientations of cluster-sized dark matter haloes and their central galaxies in the Horizon-AGN simulation
- An Empirical Model For Intrinsic Alignments: Insights From Cosmological Simulations
- First step toward matter power spectrum reconstruction with Stage III weak gravitational lensing surveys
- Intrinsic alignments of galaxies around cosmic voids
- A rising tide: Intrinsic alignments since the turn of the millennium
- Galaxy clusters as intrinsic alignment tracers: present and future
- Intrinsic alignments of the extended radio continuum emission of galaxies in the EAGLE simulations
- Statistical exploration of halo anisotropic clustering and intrinsic alignments with the mass-Peak Patch algorithm
- Intrinsic and extrinsic gravitational flexions
- Parity Violation in Galaxy Shapes: Primordial Non-Gaussianity