Metals, dust and the cosmic microwave background: fragmentation of high-redshift star-forming clouds
arXiv:0910.3665 · doi:10.1111/j.1365-2966.2009.15891.x
Abstract
We investigate the effects of the Cosmic Microwave Background (CMB) radiation field on the collapse of prestellar clouds. Using a semi-analytic model to follow the thermal evolution of clouds with varying initial metallicities and dust contents at different redshifts, we study self-consistently the response of the mean Jeans mass at cloud fragmentation to metal line-cooling, dust-cooling and the CMB. In the absence of dust grains, at redshifts z < 10 moderate characteristic masses (of 10s of Msun) are formed when the metallicity is 10^{-4} Zsun < Z < 10^{-2.5} Zsun; at higher metallicities, the CMB inhibits fragmentation and only very large masses (of ~ 100s of Msun) are formed. These effects become even more dramatic at z > 10 and the fragmentation mass scales are always > 100s of Msun, independent of the initial metallicity. When dust grains are present, sub-solar mass fragments are formed at any redshift for metallicities Z > 10^{-6} Zsun because dust-cooling remains relatively insensitive to the presence of the CMB. When Z > 10^{-3} Zsun, heating of dust grains by the CMB at z > 5 favors the formation of larger masses, which become super-solar when Z > 10^{-2} Zsun and z > 10. Finally, we discuss the implications of our result for the interpretation of the observed abundance patterns of very metal-poor stars in the galactic halo.
9 pages, 5 figures, MNRAS, accepted
References in corpus (8)
- Dust Formation and Survival in Supernova Ejecta
- Protostar Formation in the Early Universe
- Fragmentation of star-forming clouds enriched with the first dust
- Metal Cooling in Simulations of Cosmic Structure Formation
- On the Constancy of the Characteristic Mass of Young Stars
- Dust-cooling--induced Fragmentation of Low-metallicity Clouds
- Carbon-Enhanced Metal-Poor Stars, the Cosmic Microwave Background, and the Stellar IMF in the Early Universe
- On the constancy of the high-mass slope of the initial mass function
Cited by in corpus (62)
- A Substantial Population of Low Mass Stars in Luminous Elliptical Galaxies
- The First Galaxies
- Formation of the First Stars
- Pre-galactic metal enrichment - The chemical signatures of the first stars
- The origin of dust in high redshift QSOs: the case of SDSS J1148+5251
- Connecting the first galaxies with ultra faint dwarfs in the Local Group: chemical signatures of Population~III stars
- Simulating high-redshift galaxies
- The first low-mass stars: critical metallicity or dust-to-gas ratio?
- The interplay between chemical and mechanical feedback from the first generation of stars
- The Impact of Star Formation and Gamma-Ray Burst Rates at High Redshift on Cosmic Chemical Evolution and Reionization
- Transition of the initial mass function in the metal-poor environments
- The statistical properties of stars and their dependence on metallicity: the effects of opacity
- High-redshift quasars host galaxies: is there a stellar mass crisis?
- Recovery from population III supernova explosions and the onset of second generation star formation
- The effect of dust cooling on low-metallicity star-forming clouds
- Ultrafaint Dwarf Galaxies - the lowest mass relics from before reionization
- The Role of Dust in the Early Universe I : Protogalaxy Evolution
- Dust-regulated galaxy formation and evolution:A new chemodynamical model with live dust particles
- The formation of the extremely primitive star SDSS J102915+172927 relies on dust
- Star Formation in the First Galaxies - II: Clustered Star Formation and the Influence of Metal Line Cooling
- Impact of the cosmic background radiation on the initial mass function of metal-poor stars
- The metal and dust yields of the first massive stars
- Heating the IGM by X-rays from Population III Binaries in High Redshift Galaxies
- Chemical signatures of the first star clusters
- The impact of an evolving stellar initial mass function on early galaxies and reionisation
- Higher D or Li: Probes of Physics beyond the Standard Model
- The formation of massive Pop III stars in the presence of turbulence
- The first galaxies: simulating their feedback-regulated assembly
- Fragmentation in the First Galaxies
- Supernova dust formation and the grain growth in the early universe: The critical metallicity for low-mass star formation
- Gravitational collapse and the thermal evolution of low-metallicity gas clouds in the early Universe
- The Chemical Imprint of Silicate Dust on the Most Metal-Poor Stars
- The role of faint population III supernovae in forming CEMP stars in ultra-faint dwarf galaxies
- The origin of the most iron-poor star
- Origin of supermassive black holes in massive metal-poor protoclusters
- Dust grain growth and the formation of the extremely primitive star SDSS J102915+172927
- Star formation in the first galaxies - III. Formation, evolution, and characteristics of the first stellar cluster
- Planets in the Early Universe
- Dissipation of magnetic fields in star-forming clouds with different metallicities
- Dust-driven wind from disk galaxies
- Dust properties of Lyman break galaxies in cosmological simulations
- Cosmic evolution of dust in galaxies: Methods and preliminary results
- The implications of dust for high-redshift protogalaxies and the formation of binary disks
- Growth of dust grains in a low-metallicity gas and its effect on the cloud fragmentation
- The Cosmic Evolution of Magnesium Isotopes
- Fragmentation in Dusty Low-Metallicity Star Forming Halos
- Formation and evolution of molecular hydrogen in disk galaxies with different masses and Hubble types
- Fates of the oldest intermediate-mass stars - Primordial to Extremely Metal-Poor AGB and Super-AGB Stars: White Dwarf or Supernova progenitors
- Constraining the epoch of reionization from the observed properties of the high-z Universe
- Cosmic Chemical Evolution with an Early Population of Intermediate Mass Stars
- The impact of carbon and oxygen abundances on the metal-poor initial mass function
- Gravitational Fragmentation of Extremely Metal-poor Circumstellar Discs
- Leaving the dark ages with AMIGA
- Do fragmentation and accretion affect the stellar Initial Mass Function?
- Formation of the First Galaxies: Theory and Simulations
- Stellar Initial Mass Function over a range of redshifts
- Exploring effects of IMF sampling and SN feedback injection on star formation and metallicity in ultra-faint dwarf galaxies
- Constraint on Matter Power Spectrum on Scales from
- Condition for low-mass star formation in shock-compressed metal-poor clouds
- Understanding Stellar Mass-Metallicity and Size Relations in Simulated Ultra-Faint Dwarf Galaxies
- Star Formation for Predictive Primordial Galaxy Formation
- When did the initial mass function become bottom-heavy?