中文

用 XEUS 和 Constellation-X 在低红移宇宙中检测 X 射线丝线状结构

天体物理学 2009-11-07 v2

摘要

我们提出了一种可能的检测方法,用于从明亮 AGN 双星对的 X 射线吸收光谱中分析低红移宇宙中的氢。 presented a simple semi-analytical model to simulate the spectra. We model the diffuse warm-hot intergalactic medium (WHIM) component, responsible for the X-ray absorption, using inputs from high-resolution hydro-dynamical simulations and analytical prescriptions. We show that the number of OVII absorbers per unit redshift with column density larger than 1013.510^{13.5} cm2^{-2} - corresponding to an equivalent width of \sim 1 km/s - which will be possibly detectable by {\it XEUS}, is \magcir30\magcir 30 per unit redshift. {\it Constellation-X} will detect 6\sim 6 OVII absorptions per unit redshift with an equivalent width of 10 km/s. Our results show that, in a Λ\LambdaCDM Universe, the characteristic size of these absorbers at z0.1z\sim 0.1 is 1\sim 1 h1h^{-1} Mpc. The filamentary structure of WHIM can be probed by finding coincident absorption lines in the spectra of background AGN pairs. We estimate that at least 20 AGN pairs at separation \mincir20\mincir 20 arcmin are needed to detect this filamentary structure at a 3σ\sigma level. Assuming observations of distant sources using {\it XEUS} for exposure times of 500 ksec, we find that the minimum source flux to probe the filamentary structure is 2×1012\sim 2\times 10^{-12} erg cm2^{-2} s1^{-1}, in the 0.1-2.4 keV energy band. Thus, most pairs of these extragalactic X-ray bright sources have already been identified in the {\it ROSAT} All-Sky Survey. Re-observation of these objects by future missions could be a powerful way to search for baryons in the low redshift Universe.

关键词

引用

@article{arxiv.astro-ph/0210497,
  title  = {Detecting X-ray filaments in the low redshift Universe with XEUS and Constellation-X},
  author = {M. Viel and E. Branchini and R. Cen and S. Matarrese and P. Mazzotta and J. P. Ostriker},
  journal= {arXiv preprint arXiv:astro-ph/0210497},
  year   = {2009}
}

备注

18 pages, 10 Figures. Two figures added, Sections 2 and 3 expanded. More optimistic results for Constellation-X. Accepted by MNRAS