Confined Population III Enrichment and the Prospects for Prompt Second-Generation Star Formation
arXiv:1203.2957 · doi:10.1088/0004-637X/761/1/56
Abstract
It is widely recognized that nucleosynthetic output of the first, Population III supernovae was a catalyst defining the character of subsequent stellar generations. Most of the work on the earliest enrichment was carried out assuming that the first stars were extremely massive and that the associated supernovae were unusually energetic, enough to completely unbind the baryons in the host cosmic minihalo and disperse the synthesized metals into the intergalactic medium. Recent work, however, suggests that the first stars may in fact have been somewhat less massive, with a characteristic mass scale of a few tens of solar masses. We present a cosmological simulation following the transport of the metals synthesized in a Population III supernova assuming that it had an energy of 1e51 ergs, compatible with standard Type II supernovae. A young supernova remnant is inserted in the first star's relic HII region in the free expansion phase and is followed for 40 Myr employing adaptive mesh refinement and Lagrangian tracer particle techniques. The supernova remnant remains partially trapped within the minihalo and the thin snowplow shell develops pronounced instability and fingering. Roughly half of the ejecta turn around and fall back toward the center of the halo, with 1% of the ejecta reaching the center in 30 kyr and 10% in 10 Myr. The average metallicity of the combined returning ejecta and the pristine filaments feeding into the halo center from the cosmic web is 0.001 - 0.01 Z_sun, but the two remain unmixed until accreting onto the central hydrostatic core that is unresolved at the end of the simulation. We conclude that if Population III stars had less extreme masses, they promptly enriched the host minihalos with metals and triggered Population II star formation.
13 pages, 8 figures
References in corpus (40)
- Nucleosynthetic signatures of the first stars
- Massloss of galaxies due to a UV-background
- Protostellar Feedback Halts the Growth of the First Stars in the Universe
- Time-Dependent Ionization in Radiatively Cooling Gas
- Fragmentation of star-forming clouds enriched with the first dust
- Accretion onto the First Stellar Mass Black Holes
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- Fallback and Black Hole Production in Massive Stars
- The Formation of the First Stars II. Radiative Feedback Processes and Implications for the Initial Mass Function
- Population III star formation in a Lambda CDM universe, I: The effect of formation redshift and environment on protostellar accretion rate
- Population III star formation in a Lambda CDM universe, II: Effects of a photodissociating background
- Evolution of massive population III stars with rotation and magnetic fields
- Early Cosmological HII/HeIII Regions and Their Impact on Second-Generation Star Formation
- The Destruction of Cosmological Minihalos by Primordial Supernovae
- Rapidly Accreting Supergiant Protostars: Embryos of Supermassive Black Holes?
- Dark matter subhalos and the dwarf satellites of the Milky Way
- Effects of Rotation on the Minimum Mass of Primordial Progenitors of Pair Instability Supernovae
- The HII Region of a Primordial Star
- The chemistry of population III supernova ejecta: II - The nucleation of molecular clusters as a diagnostic for dust in the early universe
- Ultra faint dwarfs: probing early cosmic star formation
- Accretion onto Intermediate-Mass Black Holes in Dense Protogalactic Clouds
- A Direct Multigrid Poisson Solver for Oct-Tree Adaptive Meshes
- Metal Cooling in Simulations of Cosmic Structure Formation
- Uncovering the Chemical Signature of the First Stars in the Universe
- The first generation of stars in LCDM cosmology
- The First Galaxies: Assembly with Black Hole Feedback
- Accretion onto Black Holes from Large Scales Regulated by Radiative Feedback. II. Growth Rate and Duty Cycle
- The Chemistry of Population III Supernova Ejecta: I - Formation of Molecules in the Early Universe
- Ion-by-ion Cooling efficiencies
- The Formation of Supermassive Black Holes from Low-Mass Pop III Seeds
- The Source Density and Observability of Pair-Instability Supernovae from the First Stars
- How Very Massive Metal Free Stars Start Cosmological Reionization
- Ionization Front Instabilities in Primordial H II Regions
- Fossils of Reionization in the Local Group
- Star Formation in the First Galaxies I: Collapse Delayed by Lyman-Werner Radiation
- UV Radiative Feedback During the Advanced Stages of Reionization
- Pair-Instability Supernovae at the Epoch of Reionization
- The formation of the extremely primitive star SDSS J102915+172927 relies on dust
- UV Radiative Feedback on High-Redshift Proto-Galaxies
- The Chemical Signature of a Relic Star Cluster in the Sextans Dwarf Spheroidal Galaxy - Implications for Near-Field Cosmology
Cited by in corpus (87)
- The Assembly of the First Massive Black Holes
- One Hundred First Stars : Protostellar Evolution and the Final Masses
- Near-Field Cosmology with Metal-Poor Stars
- The Birth of a Galaxy - III. Propelling reionisation with the faintest galaxies
- Evidence for PopIII-like stellar populations in the most luminous Lyman- emitters at the epoch of re-ionisation: spectroscopic confirmation
- Abundance Profiling of Extremely Metal-Poor Stars and Supernova Properties in the Early Universe
- Segue 2: The Least Massive Galaxy
- The First Population II Stars Formed in Externally Enriched Mini-halos
- The Initial mass function of the first stars inferred from extremely metal-poor stars
- Connecting the first galaxies with ultra faint dwarfs in the Local Group: chemical signatures of Population~III stars
- Descendants of the first stars: the distinct chemical signature of second generation stars
- Finding the First Cosmic Explosions I: Pair-Instability Supernovae
- Carbon-Enhanced Metal-Poor Stars: Relics from the Dark Ages
- Recovery from population III supernova explosions and the onset of second generation star formation
- Legacy of star formation in the pre-reionization universe
- Baseline Metal Enrichment from Population III Star Formation in Cosmological Volume Simulations
- Faint Population III supernovae as the origin of the most iron-poor stars
- Preserving chemical signatures of primordial star formation in the first low-mass stars
- Three Ancient Halo Subgiants: Precise Parallaxes, Compositions, Ages, and Implications for Globular Clusters
- On the formation of the first quasars
- Ultrafaint Dwarf Galaxies - the lowest mass relics from before reionization
- The Lyman-alpha signature of the first galaxies
- Two-Dimensional Simulations of Pulsational Pair-Instability Supernovae
- Metal Transport and Chemical Heterogeneity in Early Star Forming Systems
- Metal-poor star formation triggered by the feedback effects from Pop III stars
- Gravitational waves from Population III binary black holes formed by dynamical capture
- Stellar Yields of Rotating First Stars. I. Yields of Weak Supernovae and Abundances of Carbon-enhanced Hyper Metal Poor Stars
- Star Formation in the First Galaxies - II: Clustered Star Formation and the Influence of Metal Line Cooling
- Pair Instability Supernovae of Very Massive Population III Stars
- Formation of globular clusters in atomic-cooling halos via rapid gas condensation and fragmentation during the epoch of reionization
- Seeding the Second Star: enrichment from population III, dust evolution, and cloud collapse
- Tracing the first stars and galaxies of the Milky Way
- The Early Growth of the First Black Holes
- Chemical Abundance Signature of J0023+0307 -- A Second-Generation Main-Sequence Star with [Fe/H]<-6
- Radiation Hydrodynamical Simulations of the First Quasars
- Finding the First Cosmic Explosions II: Core-Collapse Supernovae
- Finding the First Cosmic Explosions. III. Pulsational Pair-Instability Supernovae
- The Supernova that Destroyed a Protogalaxy: Prompt Chemical Enrichment and Supermassive Black Hole Growth
- Supermassive Population III Supernovae and the Birth of the First Quasars
- The first galaxies: simulating their feedback-regulated assembly
- A New Statistical Model for Population III Supernova Rates: Discriminating Between CDM and WDM Cosmologies
- Gravitational collapse and the thermal evolution of low-metallicity gas clouds in the early Universe
- The Biggest Explosions in the Universe
- A Minimum Dilution Scenario for Supernovae and Consequences for Extremely Metal-Poor Stars
- Multi-flavour SMBH seeding and evolution in cosmological environments
- The Biggest Explosions in the Universe. II
- Illuminating the Primeval Universe with Type IIn Supernovae
- Scaling Relations for Galaxies Prior to Reionization
- Lyman-Werner Escape Fractions from the First Galaxies
- Star formation in the first galaxies - III. Formation, evolution, and characteristics of the first stellar cluster
- The First Gamma-Ray Bursts in the Universe
- Low-metallicity star formation: Relative impact of metals and magnetic fields
- Abundance anomalies in metal-poor stars from Population III supernova ejecta hydrodynamics
- How the First Stars Regulated Star Formation. II. Enrichment by Nearby Supernovae
- Metal Mixing in Minihalos: The Descendants of Pair-Instability Supernovae
- Thermal instability and multi-phase interstellar medium in the first galaxies
- Revisiting The First Galaxies: The effects of Population III stars on their host galaxies
- Population III Hypernovae
- Finding the First Cosmic Explosions. IV. 90 - 140 M Pair-Instability Supernovae
- Dissipation of magnetic fields in star-forming clouds with different metallicities
- A particle dark matter footprint on the first generation of stars
- Modeling the Pollution of Pristine Gas in the Early Universe
- Blocking metal accretion onto population III stars by stellar wind
- Reconstructing emission from pre-reionization sources with cosmic infrared background fluctuation measurements by the JWST
- Toward extremely metal poor stars
- Dwarf Spheroidal Satellite Formation in a Reionized Local Group
- The dimensionless age of the Universe: a riddle for our time
- Origin of metals in old Milky Way halo stars based on GALAH and Gaia
- Stellar Tidal Disruption Events by Direct Collapse Black Holes
- Conditions for HD Cooling in the First Galaxies Revisited: Interplay between Far-Ultraviolet and Cosmic Ray Feedback in Population III Star Formation
- Ionization degree and magnetic diffusivity in the primordial star-forming clouds
- Globular Clusters and Streaming Velocities: Testing the new formation channel in high-resolution cosmological simulations
- The formation of the primitive star SDSS J102915+172927: effect of the dust mass and the grain-size distribution
- Cosmological Impact of Population III Binaries
- Chemical Diagnostics to Unveil Environments Enriched by First Stars
- The THESAN-ZOOM project: Population III star formation continues until the end of reionization
- Supernova explosions in magnetized, primordial dark matter halos
- Gravitational Fragmentation of Extremely Metal-poor Circumstellar Discs
- Physics of Superluminous Supernovae
- Connecting Primordial Star Forming Regions and Second Generation Star Formation in the Phoenix Simulations
- Very metal-poor stars in the solar vicinity: age determination
- On the effects of rotation in primordial star-forming clouds
- Does the structure of Pop III supernova ejecta affect the elemental abundance of extremely metal-poor stars?
- Triggered Population III star formation: the effect of H self-shielding
- Understanding Stellar Mass-Metallicity and Size Relations in Simulated Ultra-Faint Dwarf Galaxies
- Star Formation for Predictive Primordial Galaxy Formation
- Effect of the cosmological transition to metal-enriched star-formation on the hydrogen 21-cm signal