arXiv · astro-ph/9604142
Cosmological Redshift Distortion of Correlation Functions as a Probe of the Density Parameter and the Cosmological Constant
Abstract
We propose cosmological redshift-space distortion of correlation functions of galaxies and quasars as a probe of both the density parameter $Ω_0$ and the cosmological constant $λ_0$. In particular, we show that redshift-space distortion of quasar correlation functions at $z\sim2$ can in principle set a constraint on the value of $λ_0$. This is in contrast to the popular analysis of galaxy correlation functions in redshift space which basically determines $Ω_0^{0.6}/b$, where $b$ is the bias parameter, but is insensitive to $λ_0$. For specific applications, we present redshift-space distortion of correlation functions both in cold dark matter models and in power-law correlation function models, and discuss the extent to which one can discriminate between the different $λ_0$ models.
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Takahiko Matsubara, Yasushi Suto. 1996-07-21. Cosmological Redshift Distortion of Correlation Functions as a Probe of the Density Parameter and the Cosmological Constant. https://doi.org/10.1086/310290
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