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Large-scale bias and the peak background split

Monthly Notices of the Royal Astronomical Society · 1999 · Vol. 308(1) · pp. 119–126
Ravi K. ShethG. Tormen

Abstract

Dark matter haloes are biased tracers of the underlying dark matter distribution. We use a simple model to provide a relation between the abundance of dark matter haloes and their spatial distribution on large scales. Our model shows that knowledge of the unconditional mass function alone is sufficient to provide an accurate estimate of the large scale bias factor. Then we use the mass function measured in numerical simulations of SCDM, OCDM and LCDM to compute this bias. Comparison with these simulations shows that this simple way of estimating the bias relation and its evolution is accurate for less massive haloes as well as massive ones. In particular, we show that haloes which are less/more massive than typical M* haloes at the time they form are more/less strongly clustered than formulae based on the standard Press-Schechter mass function predict.

Galaxies: Formation, Evolution, PhenomenaAstronomy and Astrophysical ResearchCosmology and Gravitation TheoriesPhysicsDark matterSimple (philosophy)AstrophysicsScale (ratio)Function (biology)Statistical physicsDistribution functionDistribution (mathematics)Quantum mechanics
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References
Merger rates in hierarchical models of galaxy formation
Monthly Notices of the Royal Astronomical Society · 1993 · 1,999 citations
An analytic model for the spatial clustering of dark matter haloes
Monthly Notices of the Royal Astronomical Society · 1996 · 1,390 citations
The statistics of peaks of Gaussian random fields
The Astrophysical Journal · 1986 · 3,057 citations
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