arXiv · 1707.03348
Constraining the ionized gas evolution with CMB-spectroscopic survey cross-correlation
Abstract
We forecast the prospective constraints on the ionized gas model $f_{\rm gas}(z)$ at different evolutionary epochs via the tomographic cross-correlation between kinetic Sunyaev-Zeldovich (kSZ) effect and the reconstructed momentum field at different redshifts. The experiments we consider are the Planck and CMB Stage-4 survey for CMB and the SDSS-III for the galaxy spectroscopic survey. We calculate the tomographic cross-correlation power spectrum, and use the Fisher matrix to forecast the detectability of different $f_{\rm gas}(z)$ models. We find that for constant $f_{\rm gas}$ model, Planck can constrain the error of $f_{\rm gas}$ ($σ_{f_{\rm gas}}$) at each redshift bin to $\sim 0.2$, whereas four cases of CMB-S4 can achieve $σ_{f_{\rm gas}} \sim 10^{-3}$. For $f_{\rm gas}(z)=f_{\rm gas,0}/(1+z)$ model the error budget will be slightly broadened. We also investigate the model $f_{\rm gas}(z)=f_{\rm gas,0}/(1+z)^α$. Planck is unable to constrain the index of redshift evolution, but the CMB-S4 experiments can constrain the index $α$ to the level of $σ_α \sim 0.01$--$0.1$. The tomographic cross-correlation method will provide an accurate measurement of the ionized gas evolution at different epochs of the Universe.
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Yin-Zhe Ma. 2017-08-01. Constraining the ionized gas evolution with CMB-spectroscopic survey cross-correlation. https://doi.org/10.1016/j.nuclphysb.2017.04.022
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