The detailed structure and the onset of galaxy formation in low-mass gaseous dark matter haloes

Author:

Benitez-Llambay Alejandro1ORCID,Frenk Carlos1

Affiliation:

1. Institute for Computational Cosmology, Department of Physics, Durham University, South Road, Durham DH1 3LE, UK

Abstract

ABSTRACT We present a model for the formation of the first galaxies before and after the reionization of hydrogen in the early universe. In this model, galaxy formation can only take place in dark matter haloes whose mass exceeds a redshift-dependent critical value, which, before reionization, is equal (in the simplest case) to the mass at which atomic hydrogen cooling becomes effective and, after reionization, is equal to the mass above which gas cannot remain in hydrostatic equilibrium. We define the Halo Occupation Fraction (HOF) as the fraction of haloes that host a luminous galaxy as a function of halo mass. The HOF is established by the interplay between the evolution of the critical mass and the assembly history of haloes and depends on three factors: the minimum halo mass for galaxy formation before reionization, the redshift of reionization, and the intensity of the (evolving) external photoheating rate. Our fiducial model predicts a cutoff in the galaxy mass function at a present-day halo mass, $M_{200} \sim 3\times 10^{8} \, \mathrm{M}_{\odot }$; 100 per cent occupation at $M_{200} \gt 5\times 10^9 \, \mathrm{M}_{\odot }$; and a population of starless gaseous haloes of present-day mass in the range 106 ≲ M200/M⊙ ≲ 5 × 109, in which the gas is in thermal equilibrium with the ultraviolet background radiation and in hydrostatic equilibrium in the gravitational potential of the halo. The transition between HOF = 0 and HOF = 1 reflects the stochastic nature of halo mass growth. We explore how these characteristic masses vary with model assumptions and parameter values. The results of our model are in excellent agreement with cosmological hydrodynamic simulations of galaxy formation.

Funder

H2020 European Research Council

Science and Technology Facilities Council

Durham University

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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1. The impact and response of mini-haloes and the interhalo medium on cosmic reionization;Monthly Notices of the Royal Astronomical Society;2024-01-11

2. An analytic surface density profile for ΛCDM haloes and gravitational lensing studies;Monthly Notices of the Royal Astronomical Society;2024-01-05

3. Scanning for dark matter subhaloes in Hubble Space Telescope imaging of 54 strong lenses;Monthly Notices of the Royal Astronomical Society;2023-12-04

4. Ghostly Galaxies: Accretion-dominated Stellar Systems in Low-mass Dark Matter Halos;The Astrophysical Journal;2023-11-22

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