Intensity mapping of [CII] from early galaxies
arXiv:1504.06530 · doi:10.1093/mnras/stv933
Abstract
The intensity mapping of the [CII] 157.7 m fine-structure emission line represents an ideal experiment to probe star formation activity in galaxies, especially in those that are too faint to be individually detected. Here, we investigate the feasibility of such an experiment for galaxies. We construct the relation from observations and simulations, then generate mock [CII] intensity maps by applying this relation to halo catalogs built from large scale N-body simulations. Maps of the extragalactic far-infrared (FIR) continuum, referred to as "foreground", and CO rotational transition lines and [CI] fine-structure lines referred to as "contamination", are produced as well. We find that, at 316 GHz (corresponding to ), the mean intensities of the extragalactic FIR continuum, [CII] signal, all CO lines from to 13 and two [CI] lines are Jy sr, Jy sr, Jy sr and Jy sr, respectively. We discuss a method that allows us to subtract the FIR continuum foreground by removing a spectrally smooth component from each line of sight, and to suppress the CO/[CI] contamination by discarding pixels that are bright in contamination emission. The [CII] signal comes mainly from halos in the mass range ; as this mass range is narrow, intensity mapping is an ideal experiment to investigate these early galaxies. In principle such signal is accessible to a ground-based telescope with a 6 m aperture, 150 K system temperature, a pixels FIR camera in 5000 hr total integration time, however it is difficult to perform such an experiment by using currently available telescopes.
12 pages, 10 figures. Accepted for publication in MNRAS
References in corpus (16)
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- The 0.4 < z < 1.3 star formation history of the Universe as viewed in the far-infrared
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- Foreground simulations for the LOFAR - Epoch of Reionization Experiment
- Very extended cold gas, star formation and outflows in the halo of a bright QSO at z>6
- [CII] 158 m Emission as a Star Formation Tracer
- Star formation relations and CO SLEDs across the J-ladder and redshift
- Blind foreground subtraction for intensity mapping experiments
- Detection of the 205 um [NII] Line from the Carina Nebula
- Simulating cosmic metal enrichment by the first galaxies
- ALMA Observation of 158 micron [CII] Line and Dust Continuum of a z=7 Normally Star-forming Galaxy in the Epoch of Reionization
- New constraints on dust emission and UV attenuation of z=6.5-7.5 galaxies from millimeter observations
- Carbon Monoxide Intensity Mapping at Moderate Redshifts
- Searching for the reionization sources
- The H+ Region Contribution to [C II] 158 Micron Emission
- Measuring Galaxy Clustering and the Evolution of [CII] Mean Intensity with far-IR Line Intensity Mapping During 0.5 < z < 1.5
Cited by in corpus (9)
- Zooming on the internal structure of galaxies
- Spherical Harmonic Analyses of Intensity Mapping Power Spectra
- Intensity mapping of H-alpha, H-beta, [OII] and [OIII] lines at z<5
- Insights from probability distribution functions of intensity maps
- Astrophysics and Cosmology with Line-Intensity Mapping
- Studying high-z galaxies with [CII] intensity mapping
- ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: implications for spectral line intensity mapping at millimeter wavelengths and CMB spectral distortions
- Molecular clumps photoevaporation in ionized regions
- Galaxies into the Dark Ages