Evolution of supermassive stars as a pathway to black hole formation
arXiv:0910.4398 · doi:10.1111/j.1365-2966.2009.15916.x
Abstract
Supermassive stars, with masses greater than a million solar masses, are possible progenitors of supermassive black holes in galactic nuclei. Because of their short nuclear burning timescales, such objects can be formed only when matter is able to accumulate at a rate exceeding ~ 1 solar mass/yr. Here we revisit the structure and evolution of rotationally-stabilized supermassive stars, taking into account their continuous accumulation of mass and their thermal relaxation. We show that the outer layers of supermassive stars are not thermally relaxed during much of the star's main sequence lifetime. As a result, they do not resemble n=3 polytropes, as assumed in previous literature, but rather consist of convective (polytropic) cores surrounded by convectively stable envelopes that contain most of the mass. We compute the structures of these envelopes, in which the specific entropy is proportional to the enclosed mass M(R) to the 2/3-power. By matching the envelope solutions to convective cores, we calculate the core mass as a function of time. We estimate the initial black hole masses formed as a result of core-collapse, and their subsequent growth via accretion from the bloated envelopes ("quasistars") that result. The seed black holes formed in this way could have typical masses in the range ~ 10^4-10^5 solar masses, considerably larger than the remnants thought to be left by the demise of Population III stars. Supermassive black holes therefore could have been seeded during an epoch of rapid infall considerably later than the era of Pop III star formation.
10 pages, 5 figures, to appear in Monthly Notices of the Royal Astronomical Society
References in corpus (5)
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- Resolving the Formation of Protogalaxies. II. Central Gravitational Collapse
- Quasistars: Accreting black holes inside massive envelopes
- Metal-Free Gas Supply at the Edge of Reionization: Late-Epoch Population III Star Formation
- Resolving Gas Dynamics in the Circumnuclear Region of a Disk Galaxy in a Cosmological Simulation
Cited by in corpus (139)
- Black holes, gravitational waves and fundamental physics: a roadmap
- Intermediate-Mass Black Holes
- Properties and astrophysical implications of the 150 Msun binary black hole merger GW190521
- What Drives the Growth of Black Holes?
- The Formation and Evolution of Massive Black Holes
- Formation of Primordial Supermassive Stars by Rapid Mass Accretion
- Super-Critical Growth of Massive Black Holes from Stellar-Mass Seeds
- Ubiquitous seeding of supermassive black holes by direct collapse
- Relativistic Dynamics and Extreme Mass Ratio Inspirals
- Titans of the Early Universe: The Prato Statement on the Origin of the First Supermassive Black Holes
- The First Billion Years project - III: The impact of stellar radiation on the coevolution of Populations II and III
- Rapidly Accreting Supergiant Protostars: Embryos of Supermassive Black Holes?
- Formation of supermassive black hole seeds
- The characteristic black hole mass resulting from direct collapse in the early universe
- Initial mass function of intermediate mass black hole seeds
- Faint high-redshift AGN in the Chandra Deep Field South: the evolution of the AGN luminosity function and black hole demography
- On the number density of "direct collapse" black hole seeds
- X-ray constraints on the local supermassive black hole occupation fraction
- The jet feedback mechanism (jfm) in stars, galaxies and clusters
- Constraining the high redshift formation of black hole seeds in nuclear star clusters with gas inflows
- Massive black hole factories: Supermassive and quasi-star formation in primordial halos
- On the Maximum Mass of Accreting Primordial Supermassive Stars
- Growing massive black holes through super-critical accretion of stellar-mass seeds
- Quasistars and the cosmic evolution of massive black holes
- Formation of massive protostars in atomic cooling haloes
- Supermassive Seeds for Supermassive Black Holes
- The First Billion Years project: birthplaces of direct collapse black holes
- Accretion onto black holes formed by direct collapse
- How realistic UV spectra and X-rays suppress the abundance of direct collapse black holes
- The Growth of the Stellar Seeds of Supermassive Black Holes
- The Hard X-Ray Luminosity Function of High-Redshift () Active Galactic Nuclei
- Direct formation of supermassive black holes in metal-enriched gas at the heart of high-redshift galaxy mergers
- Massive Black Hole binaries in gas-rich galaxy mergers; multiple regimes of orbital decay and interplay with gas inflows
- Supermassive Black Hole Formation at High Redshifts via Direct Collapse: Physical Processes in the Early Stage
- The route to massive black hole formation via merger-driven direct collapse: a review
- Black Holes in the Early Universe
- The Formation of the First Massive Black Holes
- A UV flux constraint on the formation of direct collapse black holes
- Relativistic collapse and explosion of rotating supermassive stars with thermonuclear effects
- Formation and Coalescence of Cosmological Supermassive Black Hole Binaries in Supermassive Star Collapse
- Massive black hole seeds born via direct gas collapse in galaxy mergers: their properties, statistics and environment
- The brief era of direct collapse black hole formation
- Numerical Relativity of Compact Binaries in the 21st Century
- Detection of isolated population III stars with the James Webb Space Telescope
- General Relativistic Instability Supernova of a Supermassive Population III Star
- Formation of the first stars and black holes
- H_2 Suppression with Shocking Inflows: Testing a Pathway for Supermassive Black Hole Formation
- Supermassive Dark Stars: Detectable in JWST
- Mass Functions of Supermassive Black Holes Across Cosmic Time
- Dark Stars: A Review
- Forming massive seed black holes in high-redshift quasar host progenitors
- Gravitational wave sources in the era of multi-frequency gravitational wave astronomy
- Magnetic fields during the formation of supermassive black holes
- Simulating the formation of massive seed black holes in the early Universe. II: Impact of rate coefficient uncertainties
- Size matters: are we witnessing super-Eddington accretion in high-redshift black holes from JWST?
- Witnessing the birth of a supermassive protostar
- The Early Growth of the First Black Holes
- AMUSE-Field I: Nuclear X-ray Properties of Local Field and Group Spheroids across the Stellar Mass Scale
- How an improved implementation of H2 self-shielding influences the formation of massive stars and black holes
- Hyper-Eddington mass accretion onto a black hole with super-Eddington luminosity
- Supermassive Population III Supernovae and the Birth of the First Quasars
- Impact of dust cooling on direct collapse black hole formation
- The Supernova that Destroyed a Protogalaxy: Prompt Chemical Enrichment and Supermassive Black Hole Growth
- Assessing inflow rates in atomic cooling halos: implications for direct collapse black holes
- The formation of massive primordial stars in the presence of moderate UV backgrounds
- The structure and evolution of quasi-stars
- Photon Trapping Enables Super-Eddington Growth of Black-Hole Seeds in Galaxies at High Redshift
- The Biggest Explosions in the Universe
- The impact of reionization on the formation of supermassive black hole seeds
- The high-redshift (z>3) AGN population in the 4 Ms Chandra Deep Field South
- Origin of supermassive black holes in massive metal-poor protoclusters
- Direct Collapse to Supermassive Black Hole Seeds with Radiative Transfer: Isolated Halos
- The Biggest Explosions in the Universe. II
- Supermassive Black Hole Seed Formation at High Redshifts: Long-Term Evolution of the Direct Collapse
- Magnetorotational Collapse of Supermassive Stars: Black Hole Formation, Gravitational Waves and Jets
- Direct collapse to supermassive black hole seeds: the critical conditions for suppression of cooling
- Direct Collapse to Supermassive Black Hole Seeds with Radiation Transfer: Cosmological Halos
- Where intermediate-mass black holes could hide in the Galactic Centre: A full parameter study with the S2 orbit
- On the Evolution of Supermassive Primordial Stars in Cosmological Flows
- On Monolithic Supermassive Stars
- Maximally accreting supermassive stars: a fundamental limit imposed by hydrostatic equilibrium
- Can supermassive black hole seeds form in galaxy mergers?
- Evolution of active galactic nuclei
- Global instability by runaway collisions in nuclear stellar clusters: Numerical tests of a route for massive black hole formation
- Quasistationary solutions of self-gravitating scalar fields around collapsing stars
- Little Red Dots As Late-stage Quasi-stars
- Direct collapse of exceptionally heavy black holes in the merger-driven scenario
- General-relativistic instability in rapidly accreting supermassive stars: the impact of rotation
- Spectral properties and detectability of supermassive stars in protoglobular clusters at high redshift
- Bright vigorous winds as signposts of supermassive black hole birth
- A Lower Limit on the Halo Mass to form Supermassive Black Holes
- High-redshift SMBHs can grow from stellar-mass seeds via chaotic accretion
- Impact of gas spin and Lyman-Werner flux on black hole seed formation in cosmological simulations: implications for direct collapse
- Supernovae Powered by Collapsar Accretion in Gamma-Ray Burst Sources
- The mass budget for intermediate-mass black holes in dense star clusters
- Black hole formation and growth with non-Gaussian primordial density perturbations
- Effects of turbulence and rotation on protostar formation as a precursor to seed black holes
- General-relativistic instability in hylotropic supermassive stars
- Simulating the Magnetorotational Collapse of Supermassive Stars: Incorporating Gas Pressure Perturbations and Different Rotation Profiles
- Gravitational Waves from Disks Around Spinning Black Holes: Simulations in Full General Relativity
- Neutrino Burst-Generated Gravitational Radiation From Collapsing Supermassive Stars
- Maximally Rotating Supermassive Stars at the Onset of Collapse: The Perturbative Effects of Gas Pressure, Magnetic Fields, Dark Matter and Dark Energy
- Rapid formation of a very massive star >50000 and subsequently an IMBH from runaway collisions. Direct N-body and Monte Carlo simulations of dense star clusters
- Lonely Little Red Dots: Challenges to the AGN-nature of little red dots through their clustering and spectral energy distributions
- The Super-Eddington Nature of Super Massive Stars
- Little Red Dots as Direct-collapse Black Hole Nurseries
- Relativistic Self-similar Dynamic Collapses of Black Holes in General Polytropic Spherical Clouds
- Light or heavy supermassive black hole seeds: the role of internal rotation in the fate of supermassive stars
- Radiative feedback for supermassive star formation in a massive cloud with H2 molecules in an atomic-cooling halo
- Quasistationary solutions of scalar fields around accreting black holes
- Binding the Diproton in Stars: Anthropic Limits on the Strength of Gravity
- Triggering the formation of direct collapse black holes by their congeners
- Spectral Uniformity of Little Red Dots: A Natural Outcome of Coevolving Seed Black Holes and Nascent Starbursts
- Extreme Primordial Star Formation Enabled by High Redshift Quasars
- Rapid Growth of Galactic Supermassive Black Holes through Accreting Giant Molecular Clouds during Major Mergers of their Host Galaxies
- Higher order moment models of dense stellar systems: Applications to the modeling of the stellar velocity distribution function
- An empirical approach to selecting the first growing black hole seeds with JWST/NIRCam
- Dark halo microphysics and massive black hole scaling relations in galaxies
- Quasi-star jets as unidentified gamma-ray sources
- Demography of high redshift AGN
- Could kilomasers pinpoint supermassive stars?
- Effect of magnetic fields on the dynamics and gravitational wave emission of PPI-saturated self-gravitating accretion disks: simulations in full GR
- Black hole formation via gas-dynamical processes
- Maximally Rotating Supermassive Stars at the Onset of Collapse: Effects of Gas Pressure
- Direct Collapse Accretion Disks Within Dark Matter Halos: Saturation of the Magnetorotational Instability and the Field Expulsion
- 3D hydrodynamics simulations of core convection in supermassive main-sequence stars
- Radio signals from early direct collapse black holes
- Jet-driven active galactic nucleus feedback in galaxy formation before black hole formation
- General-relativistic instability in rapidly accreting supermassive stars in the presence of dark matter
- Probing supermassive stars and massive black hole seeds through gravitational wave inspirals
- Direct Collapse to Precursors of Supermassive Black Hole Seeds:Radiation-feedback-generated Outflows
- The properties of supermassive stars in galaxy merger driven direct collapse I: models without rotation
- Dark Matter and General Relativistic Instability in Supermassive Stars
- How Black Holes Stop Their Host Galaxy from Growing Without AGN Feedback
- Fake plunges are very eccentric real EMRIs in disguise ... they dominate the rates and are blissfully ignorant of angular momentum barriers
- The role of gas fragmentation during the formation of supermassive black holes
- Modeling Cosmological Evolution of Jetted Seyfert Galaxies for z<10
- Direct Collapse Pre-supermassive Black Hole Objects as Ly Emitters
- Direct N-body simulations of rotating and extremely massive Population III star clusters