Probing Early Structure Formation with Far-Infrared Background Correlations
arXiv:astro-ph/0009151 · doi:10.1086/319732
Abstract
The large-scale structure of high-redshift galaxies produces correlated anisotropy in the far-infrared background (FIRB). In regions of the sky where the thermal emission from Galactic dust is well below average, these high-redshift correlations may be the most significant source of angular fluctuation power over a wide range of angular scales, from about 7' to about 3 degrees, and frequencies, from about 400 to about 1000 GHz. The strength of this signal should allow detailed studies of the statistics of the FIRB fluctuations, including the shape of the angular power spectrum at a given frequency and the degree of coherence between FIRB maps at different frequencies. The FIRB correlations depend upon and hence constrain the redshift-dependent spectral energy distributions, number counts, and clustering bias of the galaxies and active nuclei that contribute to the background. We quantify the accuracy to which Planck and a newly proposed balloon-borne mission EDGE could constrain models of the high-redshift universe through the measurement of FIRB fluctuations. We conclude that the average bias of high-redshift galaxies could be measured to an accuracy of less than approximately 1% or, for example, separated into 4 redshift bins with about 10% accuracy.
15 emulateapj pages, including 9 figures, submitted to ApJ
References in corpus (19)
- A Flat Universe from High-Resolution Maps of the Cosmic Microwave Background Radiation
- MAXIMA-1: A Measurement of the Cosmic Microwave Background Anisotropy on angular scales of 10 arcminutes to 5 degrees
- Extrapolation of Galactic Dust Emission at 100 Microns to CMBR Frequencies Using FIRAS
- The Radiative Feedback of the First Cosmological Objects
- Foregrounds and Forecasts for the Cosmic Microwave Background
- Resolving the Submillimeter Background: the 850-micron Galaxy Counts
- The European Large Area ISO Survey I: Goals, Definition and Observation
- Intergalactic Dust and Observations of Type Ia Supernovae
- Radio Constraints on the Identifications and Redshifts of Submm Galaxies
- Dust-obscured star formation and AGN fuelling in hierarchical models of galaxy evolution
- The European Large Area ISO Survey II: mid-infrared extragalactic source counts
- Dust temperture and the submillimetre-radio flux density ratio as a redshift indicator for distant galaxies
- Cosmological Constant or Intergalactic Dust? Constraints from the Cosmic Far Infrared Background
- Young galaxies: what turns them on?
- Large-Scale Sunyaev-Zel'dovich Effect: Measuring Statistical Properties with Multifrequency Maps
- The European Large Area ISO Survey III: 90micron extragalactic source counts
- Clustering of the Diffuse Infrared Light from the COBE DIRBE maps. III. Power spectrum analysis and excess isotropic component of fluctuations
- Correlations in the Far Infrared Background
- Mapping the CMB Sky: The BOOMERANG experiment
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- Dusty Infrared Galaxies: Sources of the Cosmic Infrared Background
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