Cold accretion in early galaxy formation and its Lyman-alpha signatures
arXiv:1211.0014 · doi:10.1088/0004-637X/801/1/52
Abstract
The Lyman-alpha (Lya) emission has played an important role in detecting high-redshift galaxies, including recently distant ones at redshift z > 7. It may also contain important information on the origin of these galaxies. Here, we investigate the formation of a typical L* galaxy and its observational signatures at the earliest stage, by combining a cosmological hydrodynamic simulation with three-dimensional radiative transfer calculations using the newly improved ART^2 code. Our cosmological simulation uses the Aquila initial condition which zooms in onto a Milky Way-like halo with high resolutions, and our radiative transfer couples multi-wavelength continuum, Lya line, and ionization of hydrogen. We find that the modeled galaxy starts to form at redshift z ~ 24 through efficient accretion of cold gas, which produces a strong Lya line with a luminosity of L(Lya) ~ 10^42 erg/s as early as z ~ 14. The Lya emission appears to trace the cold, dense gas. The lines exhibit asymmetric, single-peak profiles, and are shifted to the blue wing, a characteristic feature of gas inflow. Moreover, the contribution to the total Lya luminosity by excitation cooling increases with redshift, and it becomes dominant at z >~ 6. We predict that L* galaxies such as the modeled one may be detected at z <~ 8 by JWST and ALMA with a reasonable integration time. Beyond redshift 12, however, only Lya line may be observable by spectroscopic surveys. Our results suggest that Lya line is one of the most powerful tools to detect the first generation of galaxies, and to decipher their formation mechanism.
10 pages, 11 figures, accepted for publication in ApJ
References in corpus (21)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- The Subaru/XMM-Newton Deep Survey (SXDS). IV. Evolution of Lya Emitters from z=3.1 to 5.7 in the 1 deg^2 Field: Luminosity Functions and AGN
- Protostar Formation in the Early Universe
- Ly-alpha Emission-Line Galaxies at z = 3.1 in the Extended Chandra Deep Field South
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- Formation of z ~ 6 quasars from hierarchical galaxy mergers
- A galaxy at a redshift z = 6.96
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- A Rapidly Star-forming Galaxy 700 Million Years After the Big Bang at z=7.51
- Resolving the Formation of Protogalaxies. II. Central Gravitational Collapse
- Early Cosmological HII/HeIII Regions and Their Impact on Second-Generation Star Formation
- The Impact of The IGM on High-Redshift Lyman Alpha Emission Lines
- The HII Region of a Primordial Star
- Resolving the Formation of Protogalaxies. I. Virialization
- The first generation of stars in LCDM cosmology
- Rapid Evolution in the Most Luminous Galaxies During the First 900 Million Years
- Escape of Lyman-alpha and continuum photons from star-forming galaxies
- Modeling the Dust Properties of z ~ 6 Quasars with ART^2 -- All-wavelength Radiative Transfer with Adaptive Refinement Tree
- Effect of Intergalactic Medium on the Observability of Lyman Alpha Emitters during Cosmic Reionization
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- A Close Comparison between Observed and Modeled Lyα Lines for z ~ 2.2 Lyman Alpha Emitters
- SILVERRUSH. VI. A simulation of Ly emitters in the reionization epoch and a comparison with Subaru Hyper Suprime-Cam survey early data
- Starbursting [O III] emitters and quiescent [C II] emitters in the reionization era
- FOREVER22: galaxy formation in protocluster regions
- Spectral variations of Lyman-alpha emission within strongly lensed sources observed with MUSE
- Observational Properties of Simulated Galaxies in Overdense and Average Regions at High Redshifts z= 6-12
- Growth of First Galaxies: Impacts of Star Formation and Stellar Feedback
- Radiative properties of the first galaxies: rapid transition between blue and red
- Formation of the first galaxies in the aftermath of the first supernovae
- Modelling of Lyman-alpha Emitting Galaxies and Ionized Bubbles at the Era of Reionization
- Deep rest-frame far-UV spectroscopy of the giant Lyman-alpha emitter 'Himiko'
- Upper limits on the mass and luminosity of Population III-dominated galaxies
- Mergers of accreting stellar-mass black holes
- ART: A 3D Parallel Multi-wavelength Radiative Transfer Code for Continuum and Atomic and Molecular Lines
- Blue Wings and Bumps via Fermi-like Acceleration of Lyman-alpha photons across Shocks
- Evidence for Infalling Gas in a Lyman- Blob
- SEURAT: SPH scheme extended with ultraviolet line radiative transfer