An improved model for the nonlinear velocity power spectrum
arXiv:1207.1439 · doi:10.1111/j.1745-3933.2012.01338.x
Abstract
The velocity divergence power spectrum is a key ingredient in modelling redshift space distortion effects on quasi-linear and nonlinear scales. We present an improved model for the z=0 velocity divergence auto and cross power spectrum which was originally suggested by Jennings et al. 2011. Using numerical simulations we measure the velocity fields using a Delaunay tesselation and obtain an accurate prediction of the velocity divergence power spectrum on scales k < 1 hMpc^{-1}. We use this to update the model which is now accurate to 2% for both P_{θθ} and P_{θδ} at z=0 on scales k <0.7 hMpc^{-1} and k <0.5 hMpc^{-1} respectively. We find that the formula for the redshift dependence of the velocity divergence power spectra proposed by Jennings et al. 2011 recovers the measured z>0 P(k) to markedly greater accuracy with the new model. The nonlinear P_{θθ} and P_{θδ} at z =1 are recovered accurately to better than 2% on scales k<0.2 hMpc^{-1}. Recently it was shown that the velocity field shows larger differences between modified gravity cosmologies and ΛCDM compared to the matter field. An accurate model for the velocity divergence power spectrum, such as the one presented here, is a valuable tool for analysing redshift space distortion effects in future galaxy surveys and for constraining deviations from general relativity.
5 pages, 2 figures, Accepted for publication in MNRAS
References in corpus (9)
- Measuring the Baryon Acoustic Oscillation scale using the SDSS and 2dFGRS
- A test of the nature of cosmic acceleration using galaxy redshift distortions
- Distinguishing Modified Gravity from Dark Energy
- Testing cosmological structure formation using redshift-space distortions
- Cluster Constraints on f(R) Gravity
- Generation of Vorticity and Velocity Dispersion by Orbit Crossing
- The detectability of baryonic acoustic oscillations in future galaxy surveys
- Redshift space distortions in f(R) gravity
- Testing gravity using the growth of large scale structure in the Universe
Cited by in corpus (28)
- The VIMOS Public Extragalactic Redshift Survey (VIPERS). Galaxy clustering and redshift-space distortions at z=0.8 in the first data release
- The Subaru FMOS galaxy redshift survey (FastSound). IV. New constraint on gravity theory from redshift space distortions at
- Constraints on Large-Scale Dark Acoustic Oscillations from Cosmology
- Large-scale dark matter simulations
- The Properties of Cosmic Velocity Fields
- Are peculiar velocity surveys competitive as a cosmological probe?
- Velocity correction for Hubble constant measurements from standard sirens
- Rapid modelling of the redshift-space power spectrum multipoles for a masked density field
- Nonlinear structure formation in Nonlocal Gravity
- Reconstructing the distribution of haloes and mock galaxies below the resolution limit in cosmological simulations
- Accurate fitting functions for peculiar velocity spectra in standard and massive-neutrino cosmologies
- A Fast Route to Modified Gravitational Growth
- The Redshift-Space Momentum Power Spectrum I: Optimal Estimation From Peculiar Velocity Surveys
- DIVE in the cosmic web: voids with Delaunay Triangulation from discrete matter tracer distributions
- The BOSS-WiggleZ overlap region II: dependence of cosmic growth on galaxy type
- Renormalization-group flow of the effective action of cosmological large-scale structures
- Velocity and mass bias in the distribution of dark matter halos
- Barry and the BAO Model Comparison
- Disentangling redshift-space distortions and nonlinear bias using the 2D power spectrum
- Cosmology with Peculiar Velocities: Observational Effects
- Two is better than one: joint statistics of density and velocity in concentric spheres as a cosmological probe
- Validating the methodology for constraining the linear growth rate from clustering anisotropies
- Nonlinear stochastic growth rates and redshift space distortions
- Evolution mapping II: describing statistics of the non-linear cosmic velocity field
- Constraining the growth rate of structure with phase correlations
- Proca-stinated Cosmology II: Matter, Halo, and Lensing Statistics in the vector Galileon
- Fourier imaging of non-linear structure formation
- Effective description of dark matter as a viscous fluid