English

Efficient adiabatic hydrodynamical simulations of the high-redshift intergalactic medium

Cosmology and Nongalactic Astrophysics 2018-02-06 v2 Astrophysics of Galaxies

Abstract

We present a post-processing tool for GADGET-2 adiabatic simulations to model various observed properties of the Lyα\alpha forest at 2.5z42.5 \leq z \leq 4 that enables an efficient parameter estimation. In particular, we model the thermal and ionization histories that are not computed self-consistently by default in GADGET-2. We capture the effect of pressure smoothing by running GADGET-2 at an elevated temperature floor and using an appropriate smoothing kernel. We validate our procedure by comparing different statistics derived from our method with those derived using self-consistent simulations with GADGET-3. These statistics are: line of sight density field power spectrum, flux probability distribution function, flux power spectrum, wavelet statistics, curvature statistics, HI column density (NHI{\rm N_{HI}}) distribution function, linewidth (bb) distribution and bb versus logNHI\log {\rm N_{HI}} scatter. For the temperature floor of 10410^4 K and typical signal-to-noise of 25, the results agree well within 20 percent of the self-consistent GADGET-3 simulation. However, this difference is smaller than the expected 1σ1\sigma sample variance for an absorption path length of 5.35\sim 5.35 at z=3z=3. Moreover for a given cosmology, we gain a factor of N\sim N in computing time for modelling the intergalactic medium under N1N \gg 1 different thermal histories. In addition, our method allows us to simulate the non-equilibrium evolution of thermal and ionization state of the gas and include heating due to non-standard sources like cosmic rays and high energy γ\gamma-rays from Blazars.

Keywords

Cite

@article{arxiv.1705.05374,
  title  = {Efficient adiabatic hydrodynamical simulations of the high-redshift intergalactic medium},
  author = {Prakash Gaikwad and Tirthankar Roy Choudhury and Raghunathan Srianand and Vikram Khaire},
  journal= {arXiv preprint arXiv:1705.05374},
  year   = {2018}
}

Comments

29 pages, 26 figures, 8 tables. New figures and tables are included, Accepted for publication in MNRAS

R2 v1 2026-06-22T19:47:39.444Z