The IRIS Far-Infrared Galaxy Survey : Expected Number Count, Redshift, and Perspective
arXiv:astro-ph/9812224 · doi:10.1086/316336
Abstract
Infrared Imaging Surveyor (IRIS) is a satellite which will be launched in the beginning of 2003. One of the main purposes of the IRIS mission is an all-sky survey at far-infrared (FIR) with a flux limit much deeper than that of IRAS. In order to examine the performance of the survey, we estimated the FIR galaxy counts in four (50, 70, 120, and 150 m) bands based on some models. We adopted a multicomponent model which consists of cirrus and starburst components for galaxy spectra, and the nearby FIR luminosity function derived from that of IRAS galaxies. We derived the number counts, redshift distributions, and infrared diffuse background radiation spectra for i) no evolution, ii) pure luminosity evolution, iii) pure density evolution with and 0.5. We found that a large number of galaxies ( in the whole sky) will be detected in this survey. With the aid of a vast number of detection, we will detect the effect of galaxy evolution, and evaluate the amplitude of evolution at least in the nearby universe in the IRIS survey, though it will be still difficult to constrain which type of evolution takes place from the number count alone. We also studied the estimation of redshifts of detected galaxies by their infrared colors alone. Although significant contamination takes place among nearby faint galaxies and high- ones, we found that rough estimation of galaxy redshift can be practicable by jointly using present and future optical surveys.
40 pages LaTeX2e, 11 embedded figures, to appear in PASP
References in corpus (14)
- Unveiling Dust-enshrouded Star Formation in the Early Universe: a Sub-mm Survey of the Hubble Deep Field
- A Deep Sub-millimeter Survey of Lensing Clusters: A New Window on Galaxy Formation and Evolution
- The Spectrum of the Extragalactic Far Infrared Background from the COBE Firas Observations
- Dusty star forming galaxies at high redshift
- The COBE Diffuse Infrared Background Experiment Search for the Cosmic Infrared Background: I. Limits and Detections
- Keck Spectroscopy of Redshift z~3 Galaxies in the Hubble Deep Field
- A hyperluminous galaxy at z = 2.8 found in a deep submillimetre survey
- Faint Blue Galaxies
- Semi-analytic modelling of galaxy evolution in the IR/submm range
- The Ha Luminosity Function and Star Formation Rate at z\sim 0.2
- A Pair of Lensed Galaxies at z=4.92 in the Field of CL1358+62
- The Spectral Energy Distribution of Normal, Starburst and Active Galaxies
- Galaxies at z=4 and the Formation of Population II
- An Extendable Galaxy Number Count Model
Cited by in corpus (14)
- An Empirically Based Model for Predicting Infrared Luminosity Functions, Deep Infrared Galaxy Counts and the Diffuse Infrared Background
- Effect of Dust Extinction on Estimating Star Formation Rate of Galaxies: Lyman Continuum Extinction
- A Bridge from Optical to Infrared Galaxies: Explaining Local Properties, Predicting Galaxy Counts and the Cosmic Background Radiation
- Exploring Galaxy Evolution from Infrared Number Counts and Cosmic Infrared Background
- A General Formulation of the Source Confusion Statistics and Application to Infrared Galaxy Surveys
- Star formation and dust extinction properties of local galaxies from AKARI-GALEX All-Sky Surveys: First results from most secure multiband sample from FUV to FIR
- Dust-to-Gas Ratio and Metallicity in Dwarf Galaxies
- Star-galaxy separation by far-infrared color-color diagrams for the AKARI FIS All-Sky Survey (Bright Source Catalogue Version beta-1)
- Evolutionary Constraints from Infra-Red Source Counts
- Impact of Future Submillimeter and Millimeter Large Facilities on the Studies of Galaxy Formation and Evolution
- Emission from Dust in Galaxies: Metallicity Dependence
- ASTRO-F - Super IRAS - The All Sky Infra-Red Survey
- ASTRO-F - The next generation of mid-infrared surveys
- H2 Formation in Low Metallicity Galaxies