We assess the detectability of baryonic acoustic oscillation (BAO) in the power spectrum of galaxies using ultralarge volume N-body simulations of the hierarchical clustering of dark matter and semi-analytical modelling of galaxy formation. A step-by-step illustration is given of the various effects (non-linear fluctuation growth, peculiar motions, non-linear and scale-dependent bias) which systematically change the form of the galaxy power spectrum on large scales from the simple prediction of linear perturbation theory. Using a new method to extract the scale of the oscillations, we nevertheless find that the BAO approach gives an unbiased estimate of the sound horizon scale. Sampling variance remains the dominant source of error despite ...
We analyse the baryon acoustic oscillation (BAO) signal of the final Baryon Oscillation Spectroscopi...
Reconstructing an estimate of linear baryon acoustic oscillations (BAO) from an evolved galaxy field...
Acoustic oscillations in the baryon–photon fluid leave a signature in the matter power spectrum. The...
We use N-body simulations of the hierarchical clustering of dark matter and semi-analytical modellin...
We measure the imprint of baryon acoustic oscillations (BAOs) in the galaxy clustering pattern at th...
We measure the imprint of baryon acoustic oscillations (BAOs) in the galaxy clustering pattern at th...
We use Monte Carlo techniques to simulate the ability of future large high-redshift galaxy surveys t...
We optimize the design of future spectroscopic redshift surveys for constraining the dark energy via...
Baryon acoustic oscillations (BAO) in the galaxy power spectrum allows us to extract the scale of th...
International audienceWe derive constraints on cosmological parameters and tests of dark energy mode...
© 2014. The American Astronomical Society. All rights reserved.. Baryon acoustic oscillations (BAOs)...
The phases as well as the amplitudes of baryonic acoustic oscillations can be extracted out of a gal...
We define and characterize a sample of 1.3 million galaxies extracted from the first year of Dark En...
We analyse the baryon acoustic oscillation (BAO) signal of the final Baryon Oscillation Spectroscopi...
Reconstructing an estimate of linear baryon acoustic oscillations (BAO) from an evolved galaxy field...
Acoustic oscillations in the baryon–photon fluid leave a signature in the matter power spectrum. The...
We use N-body simulations of the hierarchical clustering of dark matter and semi-analytical modellin...
We measure the imprint of baryon acoustic oscillations (BAOs) in the galaxy clustering pattern at th...
We measure the imprint of baryon acoustic oscillations (BAOs) in the galaxy clustering pattern at th...
We use Monte Carlo techniques to simulate the ability of future large high-redshift galaxy surveys t...
We optimize the design of future spectroscopic redshift surveys for constraining the dark energy via...
Baryon acoustic oscillations (BAO) in the galaxy power spectrum allows us to extract the scale of th...
International audienceWe derive constraints on cosmological parameters and tests of dark energy mode...
© 2014. The American Astronomical Society. All rights reserved.. Baryon acoustic oscillations (BAOs)...
The phases as well as the amplitudes of baryonic acoustic oscillations can be extracted out of a gal...
We define and characterize a sample of 1.3 million galaxies extracted from the first year of Dark En...
We analyse the baryon acoustic oscillation (BAO) signal of the final Baryon Oscillation Spectroscopi...
Reconstructing an estimate of linear baryon acoustic oscillations (BAO) from an evolved galaxy field...
Acoustic oscillations in the baryon–photon fluid leave a signature in the matter power spectrum. The...