Inferring host dark matter halo masses of individual galaxies from neighboring galaxy counts

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Abstract

How well can we infer host dark matter halo masses of individual galaxies? Based on the halo occupation distribution framework, we analytically compute the number of neighboring galaxies within a cylinder of some redshift interval and radius in transverse comoving distance. The result is used to derive the conditional probability distribution function (PDF) of the host halo mass of a galaxy, given the neighboring galaxy counts. We compare our analytic results with those obtained using a realistic mock galaxy catalog, finding reasonable agreements. We find the optimal cylinder radius to be ∼ 0.5-1 h-1 Mpc for the inference of halo masses. The PDF is generally broad, and sometimes has two peaks at low- and high-mass regimes because of the effect of chance projection along the line of sight. Potential applications and extensions of the new theoretical framework developed herein are also discussed.

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APA

Oguri, M., & Lin, Y. T. (2015). Inferring host dark matter halo masses of individual galaxies from neighboring galaxy counts. Astrophysical Journal, 801(2). https://doi.org/10.1088/0004-637X/801/2/94

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