The First Galaxies: Assembly with Black Hole Feedback
arXiv:1111.6305 · doi:10.1088/0004-637X/754/1/34
Abstract
We study how the first galaxies were assembled under feedback from the accretion onto a central black hole (BH) that is left behind by the first generation of metal-free stars through self-consistent, cosmological simulations. X-ray radiation from the accretion of gas onto BH remnants of Population III (Pop III) stars, or from high-mass X-ray binaries (HMXBs), again involving Pop III stars, influences the mode of second generation star formation. We track the evolution of the black hole accretion rate and the associated X-ray feedback starting with the death of the Pop III progenitor star inside a minihalo and following the subsequent evolution of the black hole as the minihalo grows to become an atomically cooling galaxy. We find that X-ray photoionization heating from a stellar-mass BH is able to quench further star formation in the host halo at all times before the halo enters the atomic cooling phase. X-ray radiation from a HMXB, assuming a luminosity close to the Eddington value, exerts an even stronger, and more diverse, feedback on star formation. It photoheats the gas inside the host halo, but also promotes the formation of molecular hydrogen and cooling of gas in the intergalactic medium and in nearby minihalos, leading to a net increase in the number of stars formed at early times. Our simulations further show that the radiative feedback from the first BHs may strongly suppress early BH growth, thus constraining models for the formation of supermassive BHs.
18 pages, 14 figures, accepted for publication in ApJ
References in corpus (29)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- Protostellar Feedback Halts the Growth of the First Stars in the Universe
- The Formation of Population III Binaries from Cosmological Initial Conditions
- Formation of z ~ 6 quasars from hierarchical galaxy mergers
- Accretion onto the First Stellar Mass Black Holes
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- Population III star formation in a Lambda CDM universe, I: The effect of formation redshift and environment on protostellar accretion rate
- The First Stars: Mass Growth Under Protostellar Feedback
- Early Cosmological HII/HeIII Regions and Their Impact on Second-Generation Star Formation
- Quasars at z=6: the survival of the fittest
- The aftermath of the first stars: massive black holes
- The HII Region of a Primordial Star
- Resolving the Formation of Protogalaxies. I. Virialization
- Accretion onto Intermediate-Mass Black Holes in Dense Protogalactic Clouds
- Uncovering the Chemical Signature of the First Stars in the Universe
- Low metallicity and ultra-luminous X-ray sources in the Cartwheel galaxy
- Accretion onto Black Holes from Large Scales Regulated by Radiative Feedback. II. Growth Rate and Duty Cycle
- The formation of compact massive self-gravitating discs in metal-free haloes with virial temperatures of ~ 13000-30000 K
- Formation of Massive Primordial Stars in a Reionized Gas
- On the metallicity dependence of HMXBs
- Time-evolution of ionization and heating around first stars and miniquasars
- Bridging the gap between stellar-mass black holes and ultraluminous X-ray sources
- The Energy Cascade from Warm Dark Matter Decays
- Heating of the Intergalactic Medium by Primordial Miniquasars
- Distribution of the very first PopIII stars and their relation to bright z~6 quasars
- Physical Mechanism for the Intermediate Characteristic Stellar Mass in the Extremely Metal-poor Environments
- Radiation from early black holes - I: effects on the neutral inter-galactic medium
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- The Assembly of the First Massive Black Holes
- A CEERS Discovery of an Accreting Supermassive Black Hole 570 Myr after the Big Bang: Identifying a Progenitor of Massive z > 6 Quasars
- Formation of the First Stars
- Observational evidence for intermediate-mass black holes
- Building up the Population III initial mass function from cosmological initial conditions
- Ubiquitous seeding of supermassive black holes by direct collapse
- Rapid growth of seed black holes in the early universe by supra-exponential accretion
- Rapidly Accreting Supergiant Protostars: Embryos of Supermassive Black Holes?
- Low-mass black holes as the remnants of primordial black hole formation
- Constraining the Statistics of Population III Binaries
- Initial mass function of intermediate mass black hole seeds
- Transition of the initial mass function in the metal-poor environments
- Supermassive Seeds for Supermassive Black Holes
- Super-Eddington Accretion and Feedback from the First Massive Seed Black Holes
- The Growth of Black Holes from Population III Remnants in the Renaissance Simulations
- Radiative Feedback from high mass X-ray binaries on the formation of the first galaxies and early reionization
- Confined Population III Enrichment and the Prospects for Prompt Second-Generation Star Formation
- The Growth Efficiency of High-Redshift Black Holes
- Finding the First Cosmic Explosions I: Pair-Instability Supernovae
- The influence of streaming velocities and Lyman-Werner radiation on the formation of the first stars
- Formation of primordial supermassive stars by burst accretion
- Black Holes in the Early Universe
- Recovery from population III supernova explosions and the onset of second generation star formation
- The First Galaxies: Assembly under Radiative Feedback from the First Stars
- The First Stars: A Low-Mass Formation Mode
- Formation of the first stars and black holes
- Accretion onto Black Holes from Large Scales Regulated by Radiative Feedback. III. Enhanced Luminosity of Intermediate Mass Black Holes Moving at Supersonic Speeds
- H_2 Suppression with Shocking Inflows: Testing a Pathway for Supermassive Black Hole Formation
- Pair Instability Supernovae of Very Massive Population III Stars
- X-ray emission from high-redshift miniquasars: self-regulating the population of massive black holes through global warming
- Unveiling a population of galaxies harboring low-mass black holes with X-rays
- Supermassive Black Holes in the Early Universe
- 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
- The first galaxies: simulating their feedback-regulated assembly
- Supermassive Population III Supernovae and the Birth of the First Quasars
- Simulating the growth of Intermediate Mass Black Holes
- High redshift supermassive blackholes: accretion through cold flows
- Rapid growth of seed black holes during early bulge formation
- Exploring the nature of the Lyman- emitter CR7
- Revisiting The First Galaxies: The epoch of Population III stars
- Rapid Black Hole Growth under Anisotropic Radiation Feedback
- The Biggest Explosions in the Universe
- Hyper-Eddington accretion flows onto black holes accompanied by powerful outflows
- Early growth of typical high redshift black holes seeded by direct collapse
- Lyman-Werner UV Escape Fractions from Primordial Halos
- Growth of intermediate mass black holes by tidal disruption events in the first star clusters
- The Biggest Explosions in the Universe. II
- Illuminating the Primeval Universe with Type IIn Supernovae
- Long-term evolution of supercritical black hole accretion with outflows: a subgrid feedback model for cosmological simulations
- The First Gamma-Ray Bursts in the Universe
- The First Stars: formation under X-ray feedback
- Radiation Hydrodynamical Simulations of the Birth of Intermediate-Mass Black Holes in the First Galaxies
- The first supermassive black holes
- Bulge-driven Fueling of Seed Black Holes
- How the First Stars Regulated Star Formation. II. Enrichment by Nearby Supernovae
- Formation of the first galaxies in the aftermath of the first supernovae
- Formation of Massive and Wide First-star Binaries in Radiation Hydrodynamics Simulations
- Cosmological DCBH formation sites hostile for their growth
- Population III Hypernovae
- Super-Eddington mass growth of intermediate-mass black holes embedded in dusty circumnuclear disks
- Finding the First Cosmic Explosions. IV. 90 - 140 M Pair-Instability Supernovae
- A close look at the dwarf AGN of NGC 4395: optical and near-IR integral field spectroscopy
- Reconstructing emission from pre-reionization sources with cosmic infrared background fluctuation measurements by the JWST
- Population III X-ray Binaries and their Impact on the Early Universe
- Detecting strongly lensed supernovae at z ~ 5-7 with LSST
- The seeds of supermassive black holes and the role of local radiation and metal spreading
- Dusty Gas Accretion onto Massive Black Holes and Infrared Diagnosis of the Eddington Ratio
- Bondi-Hoyle-Lyttleton accretion in the presence of small rigid bodies around a black hole
- Baryon-dark matter scattering and first star formation
- Cold accretion in early galaxy formation and its Lyman-alpha signatures
- UV regulated star formation in high-redshift galaxies
- Inception of a first quasar at cosmic dawn
- The Infrared Medium-deep Survey. IV. Low Eddington Ratio of A Faint Quasar at : Not Every Supermassive Black Hole is Growing Fast in the Early Universe
- Cosmological Impact of Population III Binaries
- On the effect of Lyman alpha trapping during the initial collapse of massive black hole seeds
- The Role of Nuclear Star Clusters in Enhancing Supermassive Black Hole Feeding Rates During Galaxy Mergers
- First emergence of cold accretion and supermassive star formation in the early universe
- Triggering the formation of direct collapse black holes by their congeners
- The high-redshift tail of stellar reionization in LCDM is beyond the reach of the low- CMB
- Evidence for an accreting massive black hole in He 2-10 from adaptive optics integral field spectroscopy
- Maximal X-ray feedback in the pre-reionization universe
- SMBH growth parameters in the early Universe of Millennium and Millennium-II simulations
- Cosmic reionization of hydrogen and helium: contribution from both mini-quasars and stars
- Globular cluster formation efficiencies from black-hole X-ray binary feedback
- Kickstarting Reionization with the First Black Holes: the effects of second-order perturbation theory in pre-reionization volumes
- Super-Eddington Growth Ceiling: Analytic Constraints on the Rapid Growth of Light-Seed Black Holes in Massive Clumps
- Observing the influence of growing black holes on the pre-reionization IGM
- Population III Star Formation in an X-ray background: I. Critical Halo Mass of Formation and Total Mass in Stars