Molecular and atomic line surveys of galaxies I: the dense, star-forming phase as a beacon
arXiv:1206.4693 · doi:10.1088/0004-637X/757/2/156
Abstract
We predict the space density of molecular gas reservoirs in the Universe, and place a lower limit on the number counts of carbon monoxide (CO), hydrogen cyanide (HCN) molecular and [CII] atomic emission lines in blind redshift surveys in the submillimeter-centimeter spectral regime. Our model uses: (a) recently available HCN Spectral Line Energy Distributions (SLEDs) of local Luminous Infrared Galaxies (LIRGs, L_IR>10^11 L_sun), (b) a value for epsilon=SFR/M_dense(H_2) provided by new developments in the study of star formation feedback on the interstellar medium and (c) a model for the evolution of the infrared luminosity density. Minimal 'emergent' CO SLEDs from the dense gas reservoirs expected in all star-forming systems in the Universe are then computed from the HCN SLEDs since warm, HCN-bright gas will necessarily be CO-bright, with the dense star-forming gas phase setting an obvious minimum to the total molecular gas mass of any star-forming galaxy. We include [CII] as the most important of the far-infrared cooling lines. Optimal blind surveys with the Atacama Large Millimeter Array (ALMA) could potentially detect very distant (z~10-12) [CII] emitters in the >ULIRG galaxy class at a rate of ~0.1-1 per hour (although this prediction is strongly dependent on the star formation and enrichment history at this early epoch), whereas the (high-frequency) Square Kilometer Array (SKA) will be capable of blindly detecting z>3 low-J CO emitters at a rate of ~40-70 per hour. The [CII] line holds special promise for the detection of metal-poor systems with extensive reservoirs of CO-dark molecular gas where detection rates with ALMA can reach up to 2-7 per hour in Bands 4-6.
16 pages, 9 figures, accepted for publication in ApJ
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Cited by in corpus (14)
- Cool Gas in High Redshift Galaxies
- A Theory for the Excitation of CO in Star Forming Galaxies
- Molecular gas heating mechanisms, and star formation feedback in merger/s tarbursts: NGC 6240 and Arp 193 as case studies
- Physical conditions of molecular gas in the Circinus galaxy: Multi-J CO and CI 1-0 observations
- Planck's Dusty GEMS. VII. Atomic carbon and molecular gas in dusty starburst galaxies at z=2 to 4
- A High-Resolution Investigation of the Multi-Phase ISM in a Galaxy during the First Two Billion Years
- The relationship between dust and [CI] at z=1 and beyond
- ALMA Deep Field in SSA22: Blindly Detected CO Emitters and [CII] Emitter Candidates
- SImulator of GAlaxy Millimetre/submillimetre Emission (SIGAME): CO emission from massive z=2 main-sequence galaxies
- A redline starburst: CO(2-1) observations of an Eddington-limited galaxy reveal star formation at its most extreme
- Cosmic evolution of the H2 mass density and the epoch of molecular gas
- High dense gas fraction in a gas-rich star-forming galaxy at z = 1.2
- Molecular Gas Excitation of the Massive Dusty Starburst CRLE and the Main-Sequence Galaxy HZ10 at z=5.7 in the COSMOS Field
- Ammonia in the interstellar medium of a starbursting disc at z=2.6