We develop a new empirical methodology to study the relation between the stellar mass of galaxies and the mass of their host subhaloes. Our approach is similar to abundance matching, and is based on assigning a stellar mass to each subhalo within a large cosmological N-body simulation. However, we significantly extend the method to include a different treatment for central and satellite galaxies, allowing the stellar mass of satellite galaxies to depend on both the host subhalo mass, and on the halo mass. Unlike in previous studies, our models are constrained by two observations: the stellar mass function of galaxies, and their autocorrelation functions (CFs). We present results for similar to 10(6) different successful models, showing that...
We study the abundance of satellite galaxies as a function of primary stellar mass using the Sloan D...
© 2018, Pleiades Publishing, Inc. We study relation between stellar mass and halo mass for high-mass...
In this paper we study the stellar mass dependence of galaxy clustering in the 6dF Galaxy Survey (6d...
We compare the stellar masses of central and satellite galaxies predicted by three independent semi-...
© 2021 Oxford University Press. All rights reserved. We study the stellar-to-halo mass relation (SHM...
We use a statistical approach to determine the relationship between the stellar masses of galaxies a...
We conduct a comprehensive analysis of the relationship between central galaxies and their host dark...
In the standard paradigm, satellite galaxies are believed to be associated with the population of da...
In the standard paradigm, satellite galaxies are believed to be associated with the population of da...
We introduce a novel abundance matching technique that produces a more accurate estimate of the pre-...
We present an observational study of the stellar mass function of satellite galaxies around central ...
We present STEEL, a STatistical sEmi-Empirical modeL, designed to probe the distribution of satellit...
We study the stellar-to-halo mass relation of central galaxies in the range 9.7 5 × 1010 h-2 M⊙, th...
Many properties of the Milky Way's (MW) dark matter halo, including its mass-assembly history, conce...
The Tully–Fisher relation (TFR) expresses the connection between rotating galaxies and the dark matt...
We study the abundance of satellite galaxies as a function of primary stellar mass using the Sloan D...
© 2018, Pleiades Publishing, Inc. We study relation between stellar mass and halo mass for high-mass...
In this paper we study the stellar mass dependence of galaxy clustering in the 6dF Galaxy Survey (6d...
We compare the stellar masses of central and satellite galaxies predicted by three independent semi-...
© 2021 Oxford University Press. All rights reserved. We study the stellar-to-halo mass relation (SHM...
We use a statistical approach to determine the relationship between the stellar masses of galaxies a...
We conduct a comprehensive analysis of the relationship between central galaxies and their host dark...
In the standard paradigm, satellite galaxies are believed to be associated with the population of da...
In the standard paradigm, satellite galaxies are believed to be associated with the population of da...
We introduce a novel abundance matching technique that produces a more accurate estimate of the pre-...
We present an observational study of the stellar mass function of satellite galaxies around central ...
We present STEEL, a STatistical sEmi-Empirical modeL, designed to probe the distribution of satellit...
We study the stellar-to-halo mass relation of central galaxies in the range 9.7 5 × 1010 h-2 M⊙, th...
Many properties of the Milky Way's (MW) dark matter halo, including its mass-assembly history, conce...
The Tully–Fisher relation (TFR) expresses the connection between rotating galaxies and the dark matt...
We study the abundance of satellite galaxies as a function of primary stellar mass using the Sloan D...
© 2018, Pleiades Publishing, Inc. We study relation between stellar mass and halo mass for high-mass...
In this paper we study the stellar mass dependence of galaxy clustering in the 6dF Galaxy Survey (6d...