English

A Foreground Masking Strategy for [CII] Intensity Mapping Experiments Using Galaxies Selected by Stellar Mass and Redshift

Astrophysics of Galaxies 2018-04-18 v3

Abstract

Intensity mapping provides a unique means to probe the epoch of reionization (EoR), when the neutral intergalactic medium was ionized by the energetic photons emitted from the first galaxies. The [CII] 158μ\mum fine-structure line is typically one of the brightest emission lines of star-forming galaxies and thus a promising tracer of the global EoR star-formation activity. However, [CII] intensity maps at 6z86 \lesssim z \lesssim 8 are contaminated by interloping CO rotational line emission (3Jupp63 \leq J_{\rm upp} \leq 6) from lower-redshift galaxies. Here we present a strategy to remove the foreground contamination in upcoming [CII] intensity mapping experiments, guided by a model of CO emission from foreground galaxies. The model is based on empirical measurements of the mean and scatter of the total infrared luminosities of galaxies at z<3z < 3 and with stellar masses M>108MM_{*} > 10^{8}\,\rm M_{\rm \odot} selected in KK-band from the COSMOS/UltraVISTA survey, which can be converted to CO line strengths. For a mock field of the Tomographic Ionized-carbon Mapping Experiment (TIME), we find that masking out the "voxels" (spectral-spatial elements) containing foreground galaxies identified using an optimized CO flux threshold results in a zz-dependent criterion mKAB22m^{\rm AB}_{\rm K} \lesssim 22 (or M109MM_{*} \gtrsim 10^{9} \,\rm M_{\rm \odot}) at z<1z < 1 and makes a [CII]/COtot_{\rm tot} power ratio of 10\gtrsim 10 at k=0.1k=0.1 hh/Mpc achievable, at the cost of a moderate 8%\lesssim 8\% loss of total survey volume.

Keywords

Cite

@article{arxiv.1610.10095,
  title  = {A Foreground Masking Strategy for [CII] Intensity Mapping Experiments Using Galaxies Selected by Stellar Mass and Redshift},
  author = {Guochao Sun and Lorenzo Moncelsi and Marco P. Viero and Marta B. Silva and Jamie Bock and C. Matt Bradford and Tzu-Ching Chang and Yun-Ting Cheng and Asantha Cooray and Abigail Crites and Steve Hailey-Dunsheath and Jonathon Hunacek and Bade Uzgil and Michael Zemcov},
  journal= {arXiv preprint arXiv:1610.10095},
  year   = {2018}
}

Comments

14 figures, 4 tables, re-submitted to ApJ after addressing reviewer's comments. Comments welcome

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