Measuring the Density Fluctuation From the Cluster Gas Mass Function
arXiv:astro-ph/9701201 · doi:10.1086/304805
Abstract
We investigate the gas mass function of clusters of galaxies to measure the density fluctuation spectrum on cluster scales. The baryon abundance confined in rich clusters is computed from the gas mass function and compared with the mean baryon density in the universe which is predicted by the Big Bang Nucleosynthesis. This baryon fraction and the slope of the gas mass function put constraints on , the rms linear fluctuation on scales of $8h^{-1}\Mpc$, and the slope of the fluctuation spectrum, where is the Hubble constant in units of 100 $\kms \oMpc$. We find and for , where we assume that the density spectrum is approximated by a power law on cluster scales: . Our value of is independent of the density parameter, , and thus we can estimate by combining obtained in this study with those from -dependent analyses to date. We find that derived from the cluster abundance such as the temperature function gives while measured from the peculiar velocity field of galaxies gives , depending on the technique used to analyze peculiar velocity data. Constraints are also derived for open, spatially flat, and tilted Cold Dark Matter models and for Cold + Hot Dark Matter models.
9 pages, LaTeX (aaspp4), 6 PostScript figures, submitted to ApJ
References in corpus (4)
- Homogeneous Velocity-Distance Data for Peculiar Velocity Analysis. III. The Mark III Catalog of Galaxy Peculiar Velocities
- The baryon content of the Universe
- Constraints on the fluctuation amplitude and density parameter from X-ray cluster number counts
- Maximum-Likelihood Comparisons of Tully-Fisher and Redshift Data: Constraints on Omega and Biasing
Cited by in corpus (5)
- Measuring Cosmological Parameters from the Evolution of Cluster X-ray Temperatures
- The Virial Mass Function of Nearby SDSS Galaxy Clusters
- Reconstructing the radial profiles of gas density and temperature in clusters of galaxies from high-resolution X-ray and radio observations
- An SZ Temperature Decrement - X-ray Luminosity Relation for Galaxy Clusters
- A Chi-Squared Analysis of the Measurements of Two Cosmological Parameters Over Time