English

Evolution of the Ly$\alpha$ forest: a consistent picture

Astrophysics 2019-08-17 v1

Abstract

We study the evolution with redshift of the number density of Lyα\alpha clouds in a CDM model using numerical simulations including photo-ionization and cooling of the baryonic component. The photo-ionizing flux is consistently taken as proportional to the rate at which material cools below 5000~K in the simulation. The number density of lines with NN(HI)~>>~1014^{14}~cm2^{-2} given by the simulation can be approximated as dnn/dzz~\sim~16.8(1+zz)0.8^{0.8}+0.687(1+z)2.5^{2.5} which fits well the data at any redshift. The number of weaker lines is reproduced within a factor of two and does not decrease with time as fast as the number of strong lines. For NN(HI)~>>~1013^{13}~cm2^{-2}, we find dnn/dzz~\propto~(1+zz)0.7^{0.7}. \par At zz~=~0, the two-point correlation function for Lymanα\alpha clouds with NN(HI)~>>~1013^{13} and >>~1014^{14}~cm2^{-2} has a slope \sim~-1.75 comparable to the slope of the two point correlation function for the galaxy distribution. The signal is higher for stronger lines for separations smaller than 1~Mpc. Part of the Lymanα\alpha forest is indeed associated with galaxies however the overall picture is that Lyα\alpha absorption lines originate in the warm gas that traces the potential wells of filamentary structures defined by the dark matter.

Keywords

Cite

@article{arxiv.astro-ph/9508129,
  title  = {Evolution of the Ly$\alpha$ forest: a consistent picture},
  author = {Jan P. Mücket and Patrick Petitjean and Ronald E. Kates and Rüdiger Riediger},
  journal= {arXiv preprint arXiv:astro-ph/9508129},
  year   = {2019}
}

Comments

10 pages, compressed uuencoded postscript file, figures included, accepted for publication in Astron.Astrophys. requests to jpmuecket@aip.de

R2 v1 2026-07-22T09:26:45.582Z