Non-linear structure formation and the acoustic scale
arXiv:0805.0117 · doi:10.1086/589921
Abstract
We present high signal-to-noise measurements of the acoustic scale in the presence of nonlinear growth and redshift distortions using 320(Gpc/h)^3 of cosmological PM simulations. Using simple fitting methods, we obtain robust measurements of the acoustic scale with scatter close to that predicted by the Fisher matrix. We detect and quantify the shift in the acoustic scale by analyzing the power spectrum: we detect at greater than 5 sigma a decrease in the acoustic scale in the real-space matter power spectrum of 0.2% at z=1.5, growing to 0.45% at z=0.3. In redshift space, the shifts are about 25% larger: we detect a decrease of 0.25% of at z=1.5 and 0.54% at z=0.3. Despite the nonzero amounts, these shifts are highly predictable numerically, and hence removable within the standard ruler analysis of clustering data. Moreover, we show that a simple density-field reconstruction method substantially reduces the scatter and nonlinear shifts of the acoustic scale measurements: the shifts are reduced to less than 0.1% at z=0.3-1.5, even in the presence of non-negligible shot noise. Finally, we show that the ratio of the cosmological distance to the sound horizon that would be inferred from these fits is robust to variations in the parameterization of the fitting method and reasonable differences in the template cosmology.
Accepted for publication in the ApJ, 14 emulated apj pages with 8 figures and 6 tables, small changes to match the accepted version
References in corpus (10)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Measuring the Baryon Acoustic Oscillation scale using the SDSS and 2dFGRS
- Resumming Cosmological Perturbations via the Lagrangian Picture: One-loop Results in Real Space and in Redshift Space
- Nonlinear Evolution of Baryon Acoustic Oscillations
- The Scale Dependence of Halo and Galaxy Bias: Effects in Real Space
- Large-Scale Anisotropic Correlation Function of SDSS Luminous Red Galaxies
- The detectability of baryonic acoustic oscillations in future galaxy surveys
- `Eppur Si Muove': On The Motion of the Acoustic Peak in the Correlation Function
- Constraining Anisotropic Baryon Oscillations
- Constraining dark energy via baryon acoustic oscillations in the (an)isotropic light-cone power spectrum
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- Consistency among distance measurements: transparency, BAO scale and accelerated expansion
- Third-Order Density Perturbation and One-Loop Power Spectrum in Dark-Energy-Dominated Universe
- Forecasting the Dark Energy Measurement with Baryon Acoustic Oscillations: Prospects for the LAMOST surveys