The Chemical Imprint of Silicate Dust on the Most Metal-Poor Stars
arXiv:1307.2239 · doi:10.1088/0004-637X/782/2/95
Abstract
We investigate the impact of dust-induced gas fragmentation on the formation of the first low-mass, metal-poor stars (< 1Msun) in the early universe. Previous work has shown the existence of a critical dust-to-gas ratio, below which dust thermal cooling cannot cause gas fragmentation. Assuming the first dust is silicon-based, we compute critical dust-to-gas ratios and associated critical silicon abundances ([Si/H]crit). At the density and temperature associated with protostellar disks, we find that a standard Milky Way grain size distribution gives [Si/H]crit = -4.5 +/- 0.1, while smaller grain sizes created in a supernova reverse shock give [Si/H]crit = -5.3 +/- 0.1. Other environments are not dense enough to be influenced by dust cooling. We test the silicate dust cooling theory by comparing to silicon abundances observed in the most iron-poor stars ([Fe/H] < -4.0). Several stars have silicon abundances low enough to rule out dust-induced gas fragmentation with a standard grain size distribution. Moreover, two of these stars have such low silicon abundances that even dust with a shocked grain size distribution cannot explain their formation. Adding small amounts of carbon dust does not significantly change these conclusions. Additionally, we find that these stars exhibit either high carbon with low silicon abundances or the reverse. A silicate dust scenario thus suggests that the earliest low-mass star formation in the most metal-poor regime may have proceeded through two distinct cooling pathways: fine structure line cooling and dust cooling. This naturally explains both the carbon-rich and carbon-normal stars at extremely low [Fe/H].
14 pages, 8 figures; accepted to ApJ
References in corpus (22)
- Nucleosynthetic signatures of the first stars
- Dust Formation and Survival in Supernova Ejecta
- Formation of the First Stars
- An extremely primitive halo star
- Fragmentation of star-forming clouds enriched with the first dust
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- HE 0557-4840 - Ultra-Metal-Poor and Carbon-Rich
- Probing the Formation of the First Low-Mass Stars with Stellar Archaeology
- The Destruction of Cosmological Minihalos by Primordial Supernovae
- HE 1327-2326, an unevolved star with [Fe/H]<-5.0. II. New 3D-1D corrected abundances from a VLT/UVES spectrum
- Resolving the Formation of Protogalaxies. I. Virialization
- The chemistry of population III supernova ejecta: II - The nucleation of molecular clusters as a diagnostic for dust in the early universe
- New Extremely Metal-Poor Stars in the Galactic Halo
- The chemical compositions of the extreme halo stars HE0107-5240 and HE1327-2326 inferred from 3D hydrodynamical model atmospheres
- The Chemistry of Population III Supernova Ejecta: I - Formation of Molecules in the Early Universe
- Extremely metal-poor gas at a redshift of 7
- Star Formation in the First Galaxies I: Collapse Delayed by Lyman-Werner Radiation
- Dust-cooling--induced Fragmentation of Low-metallicity Clouds
- Primordial massive supernovae as the first molecular factories in the early universe
- Low-mass star formation triggered by early supernova explosions
- Formulation of Non-steady-state Dust Formation Process in Astrophysical Environments
- Growth of dust grains in a low-metallicity gas and its effect on the cloud fragmentation
Cited by in corpus (34)
- Near-Field Cosmology with Metal-Poor Stars
- Carbon-Enhanced Metal-Poor Star Frequencies in the Galaxy: Corrections for the Effect of Evolutionary Status on Carbon Abundances
- Radiative Stellar Feedback in Galaxy Formation: Methods and Physics
- Carbon-Enhanced Metal-Poor Stars: Relics from the Dark Ages
- Recovery from population III supernova explosions and the onset of second generation star formation
- SD 1313-0019 -- Another second-generation star with [Fe/H] = -5.0, observed with the Magellan Telescope
- Preserving chemical signatures of primordial star formation in the first low-mass stars
- High-resolution spectroscopy of extremely metal-poor stars in the least evolved galaxies: Bootes II
- The first galaxies: simulating their feedback-regulated assembly
- Gravitational collapse and the thermal evolution of low-metallicity gas clouds in the early Universe
- Ubiquitous Instabilities of Dust Moving in Magnetized Gas
- Supernova dust formation and the grain growth in the early universe: The critical metallicity for low-mass star formation
- The origin of the most iron-poor star
- The Far Infrared Emission of the First Massive Galaxies
- The Resonant Drag Instability (RDI): Acoustic Modes
- An equatorial ultra iron-poor star identified in BOSS
- Abundance anomalies in metal-poor stars from Population III supernova ejecta hydrodynamics
- The chemical abundance pattern of the extremely metal-poor thin disk star 2MASS J1808-5104 and its origins
- Some Stars are Totally Metal: A New Mechanism Driving Dust Across Star-Forming Clouds, and Consequences for Planets, Stars, and Galaxies
- Dissipation of magnetic fields in star-forming clouds with different metallicities
- Formation of carbon-enhanced metal-poor stars in the presence of far ultraviolet radiation
- Toward extremely metal poor stars
- CEMP stars: possible hosts to carbon planets in the early universe
- Raising the observed metallicity floor with a 3D non-LTE analysis of SDSS J102915.14+172927.9
- The formation of the primitive star SDSS J102915+172927: effect of the dust mass and the grain-size distribution
- A Critique of the Spite Plateau, and the Astration of Primordial Lithium
- Dust Production Factories in the Early Universe: Formation of Carbon Grains in Red-supergiant Winds of Very Massive Population III Stars
- Are the Formation and Abundances of Metal-Poor Stars the Result of Dust Dynamics?
- Probing the Nature of the First Galaxies with JWST and ALMA
- Contribution of the first galaxies to the cosmic far-infrared/sub-millimeter background - I. Mean background level
- Revisiting the iron abundance in the hyper iron-poor star HE1327-2326 with UV COS/ data
- Redshift Horizon for Detecting the First Galaxies in Far-Infared Surveys
- Star Formation for Predictive Primordial Galaxy Formation
- Aeos: The Impact of Population III Initial Mass Function and Star-by-Star Models in Galaxy Simulations