A Bridge from Optical to Infrared Galaxies: Explaining Local Properties, Predicting Galaxy Counts and the Cosmic Background Radiation
arXiv:astro-ph/0201277 · doi:10.1086/339628
Abstract
We give an explanation for the origin of various properties observed in local infrared galaxies, and make predictions for galaxy counts and cosmic background radiation (CBR), by a new model extended from that for optical/near-infrared galaxies. Important new characteristics of this study are that (1) mass scale dependence of dust extinction is introduced based on the size-luminosity relation of optical galaxies, and that (2) the big grain dust temperature T_dust is calculated based on a physical consideration for energy balance, rather than using the empirical relation between T_dust and total infrared luminosity L_IR found in local galaxies, which has been employed in most of previous works. Consequently, the local properties of infrared galaxies, i.e., optical/infrared luminosity ratios, L_IR-T_dust correlation, and infrared luminosity function are outputs predicted by the model. Our model indeed reproduces these local properties reasonably well. We then found considerably different results for MIR-submm counts and CBR from most of previous works based on the empirical L_IR-T_dust relation; especially, it is shown that the dust temperature of starbursting primordial elliptical galaxies is expected to be very high (40-80K). This indicates that intense starbursts of forming elliptical galaxies should have occurred at z~2-3, in contrast to the previous results that significant starbursts beyond z~1 tend to overproduce the far-infrared (FIR) CBR detected by COBE/FIRAS. On the other hand, our model predicts that the mid-infrared (MIR) flux from warm/nonequilibrium dust is relatively weak in such galaxies making FIR CBR, and this effect reconciles the prima facie conflict between the upper limit on MIR CBR from TeV gamma-ray observations and the COBE detections of FIR CBR. (abridged)
24 pages including 19 figures. Accepted by ApJ
References in corpus (14)
- A Long-Wavelength View on Galaxy Evolution from Deep Surveys by the Infrared Space Observatory
- Infrared to millimetre photometry of ultra-luminous IR galaxies: new evidence favouring a 3-stage dust model
- Infrared Emission from the Radio Supernebula in NGC 5253: A Proto-Globular Cluster?
- The Cosmic Infrared Background at 1.25 microns and 2.2 microns using DIRBE and 2MASS: a contribution not due to galaxies ?
- FIRBACK: III. Catalog, Source counts, and cosmological implications of the 170 micron ISO Deep survey
- Diffuse Extragalactic Background Light versus Deep Galaxy Counts in the Subaru Deep Field: Missing Light in the Universe?
- Near Infrared Faint Galaxies in the Subaru Deep Field: Comparing the Theory with Observations for Galaxy Counts, Colors, and Size Distributions to K=24.5
- New constraints on the cosmic mid-infrared background using TeV gamma-ray astronomy
- A New Method for ISOCAM Data Reduction - I. Application to the European Large Area ISO Survey Southern Field: Method and Results
- Hyper Extremely Red Objects in the Subaru Deep Field: Evidence for Primordial Elliptical Galaxies in the Dusty Starburst Phase
- Impact of Future Submillimeter and Millimeter Large Facilities on the Studies of Galaxy Formation and Evolution
- Galaxy number counts in the Hubble Deep Field as a strong constraint on a hierarchical galaxy formation model
- The redshifts of bright sub-mm sources
- Cosmological History of Stars and Metals
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