(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 and the mean SZ Compton y parameter. Simulation artifacts are quantified and corrected and our analytical model passes tests of various simulations and is able to predict Tˉg and yˉ to several percent accuracy. For low matter density ΛCDM cosmology, the present Tˉg is 0.32(σ8/0.84)3.05−0.15Ωm(Ωm/0.268)1.28−0.2σ8keV. The mean y parameter is 2.6×10−6(σ8/0.84)4.1−2Ωm(Ωm/0.268)1.28−0.2σ8. The current upper limit of y<1.5×10−5 measured by FIRAS has already ruled out combinations of high σ8\ga1.1 and high Ωm\ga0.5.
@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