2017/11/01 by B. Novosyadlyj, O. Sergijenko, V. M. Shulga
Engineering · Physics and Astronomy · #Cold dark matter #Cosmological constant #Cosmology #Cosmology and Gravitation Theories #Galaxies: Formation, Evolution, Phenomena #Hydrogen #Lambda-CDM model #Material Science and Thermodynamics #Recombination #Redshift #Reionization #Universe #astro-ph.CO
paper · pdf · doi:10.3103/s088459131706006x
published as Kinematics and Physics of Celestial Bodies, 2017, Vol. 33, No. 6, pp. 3-16 (in Ukrainian) · 12 pages, 1 figure, 3 tables
openalex publication_date 2017/11/01 · arxiv created 2017/12/12 · openalex created_date 2017/12/22 · arxiv updated 2018/02/14 · openalex updated_date 2026/08/05
The formation of first molecules, negative Hydrogen ions, and molecular ions in a model of the Universe with cosmological constant and cold dark matter is studied. The cosmological recombination is described in the framework of modified model of the effective 3-level atom, while the kinetics of chemical reactions is described in the framework of the minimal model for Hydrogen, Deuterium, and Helium. It is found that the uncertainties of molecular abundances caused by the inaccuracies of computation of cosmological recombination are approximately 2–3%. The uncertainties of values of cosmological parameters affect the abundances of molecules, negative Hydrogen ions, and molecular ions at the level of up to 2%. In the absence of cosmological reionization at redshift z = 10, the ratios of abundances to the Hydrogen one are 3.08 × 10 –13 for H – , 2.37 × 10 –6 for H 2 , 1.26 × 10 –13 for H 2 + , 1.12 × 10 –9 for HD, and 8.54 × 10 –14 for HeH + .