English

The intergalactic medium temperature and Compton y parameter

Astrophysics 2009-11-10 v2

Abstract

(Abridged) The precision modeling of the thermal Sunyaev Zeldovich (SZ) effect and future high accuracy measurements will provide a powerful way to constrain the thermal history of the universe. In this paper, we combine high resolution adiabatic hydro simulations and analytical models to provide a precision modeling of the gas density weighted temperature Tˉg\bar{T}_g and the mean SZ Compton yy parameter. Simulation artifacts are quantified and corrected and our analytical model passes tests of various simulations and is able to predict Tˉg\bar{T}_g and yˉ\bar{y} to several percent accuracy. For low matter density Λ\LambdaCDM cosmology, the present Tˉg\bar{T}_g is 0.32(σ8/0.84)3.050.15Ωm(Ωm/0.268)1.280.2σ8keV0.32 (\sigma_8/0.84)^{3.05-0.15\Omega_m}(\Omega_m/0.268)^{1.28-0.2\sigma_8} {\rm keV}. The mean yy parameter is 2.6×106(σ8/0.84)4.12Ωm(Ωm/0.268)1.280.2σ82.6\times 10^{-6} (\sigma_8/0.84)^{4.1-2\Omega_m}(\Omega_m/0.268)^{1.28-0.2\sigma_8}. The current upper limit of y<1.5×105y<1.5\times 10^{-5} measured by FIRAS has already ruled out combinations of high σ8\ga1.1\sigma_8\ga 1.1 and high Ωm\ga0.5\Omega_m\ga 0.5.

Keywords

Cite

@article{arxiv.astro-ph/0402115,
  title  = {The intergalactic medium temperature and Compton y parameter},
  author = {Pengjie Zhang and Ue-Li Pen and Hy Trac},
  journal= {arXiv preprint arXiv:astro-ph/0402115},
  year   = {2009}
}

Comments

11 pages, 12 figures, MNRAS, in press. Added more discussions about the halo model prediction

R2 v1 2026-07-22T08:34:28.112Z