Trapping of HII regions in Population III star formation
arXiv:2202.09803 · doi:10.1093/mnras/stac487
Abstract
Radiative feedback from massive Population III (Pop III) stars in the form of ionising and photodissociating photons is widely believed to play a central role in shutting off accretion onto these stars. Understanding whether and how this occurs is vital for predicting the final masses reached by these stars and the form of the Pop III stellar initial mass function. To help us better understand the impact of UV radiation from massive Pop III stars on the gas surrounding them, we carry out high resolution simulations of the formation and early evolution of these stars, using the AREPO moving-mesh code coupled with the innovative radiative transfer module SPRAI. Contrary to most previous results, we find that the ionising radiation from these stars is trapped in the dense accretion disk surrounding them. Consequently, the inclusion of radiative feedback has no significant impact on either the number or the total mass of protostars formed during the 20 kyr period that we simulate. We show that the reason that we obtain qualitatively different results from previous studies of Pop III stellar feedback lies in how the radiation is injected into the simulation. HII region trapping only occurs if the photons are injected on scales smaller than the local scale height of the accretion disk, a criterion not fulfilled in previous 3D simulations of this process. Finally, we speculate as to whether outflows driven by the magnetic field or by Lyman-alpha radiation pressure may be able to clear enough gas away from the star to allow the HII region to escape from the disk.
22 pages, 20 figures, 4 tables. Accepted by MNRAS
References in corpus (28)
- The Formation of Population III Binaries from Cosmological Initial Conditions
- Primordial Star Formation under the Influence of Far Ultraviolet Radiation: 1540 Cosmological Halos and the Stellar Mass Distribution
- The Mass Spectrum of the First Stars
- Circumventing the radiation pressure barrier in the formation of massive stars via disk accretion
- Uncertainties in H2 and HD Chemistry and Cooling and their Role in Early Structure Formation
- Super-Critical Growth of Massive Black Holes from Stellar-Mass Seeds
- The Formation of the First Stars II. Radiative Feedback Processes and Implications for the Initial Mass Function
- 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
- Three-dimensional simulation of massive star formation in the disk accretion scenario
- Early Cosmological HII/HeIII Regions and Their Impact on Second-Generation Star Formation
- Star formation at very low metallicity. I: Chemistry and cooling at low densities
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- The Evolution of Supermassive Population III Stars
- The HII Region of a Primordial Star
- Understanding Spatial and Spectral Morphologies of Ultracompact H II Regions
- An Unstable Truth: How Massive Stars get their Mass
- The formation of direct collapse black holes under the influence of streaming velocities
- Formation sites of Population III star formation: The effects of different levels of rotation and turbulence on the fragmentation behavior of primordial gas
- Merge or survive: Number of Population III stars per minihalo
- Magneto-Hydrodynamics of Population III Star Formation
- The First Jet in the Universe: Protostellar Jets from the First Stars
- The influence of magnetic fields on the thermodynamics of primordial star formation
- The Formation of Very Massive Stars in Early Galaxies and Implications for Intermediate Mass Black Holes
- Accretion Phase of Star Formation in Clouds with Different Metallicities
- Lyman-Werner Escape Fractions from the First Galaxies
- Radiative feedback for supermassive star formation in a massive cloud with H2 molecules in an atomic-cooling halo
- Massive star formation via torus accretion: the effect of photoionization feedback
Cited by in corpus (31)
- The Science of the Einstein Telescope
- Binary black hole mergers from Population III stars: uncertainties from star formation and binary star properties
- Formation of supermassive stars in the first star clusters
- Effects of stellar-mass primordial black holes on first star formation
- Massive binary black holes from Population II and III stars
- Formation of Massive and Wide First-star Binaries in Radiation Hydrodynamics Simulations
- Population III star formation in an X-ray background: III. Periodic radiative feedback and luminosity induced by elliptical orbits
- From dark matter halos to pre-stellar cores: High resolution follow-up of cosmological Lyman-Werner simulations
- Gravitational waves from mergers of Population III binary black holes: roles played by two evolution channels
- Impact of Population III homogeneous stellar evolution on early cosmic reionisation
- Lyman- feedback prevails at Cosmic Dawn: Implications for the first galaxies, stars, and star clusters
- Binary black hole mergers from Population III star clusters
- The THESAN-ZOOM project: Population III star formation continues until the end of reionization
- Massive Prestellar Cores in Radiation-magneto-turbulent Simulations of Molecular Clouds
- Formation of metal-free binaries: Impact of H line cooling and CIE cooling
- Classifying binary black holes from Population III stars with the Einstein Telescope: A machine-learning approach
- Magnetic fields limit the mass of Population III stars even before the onset of protostellar radiation feedback
- The mass distribution of the first stars can be determined via the 21-cm signal
- Population III star formation in the presence of turbulence, magnetic fields and ionizing radiation feedback
- Aeos: Transport of Metals from Minihalos following Population III Stellar Feedback
- A Modified Initial Mass Function of the First Stars with Explodability Theory under Different Enrichment Scenarios
- Hungry or Not: How Stellar-Mass Black Holes Grow (or Don't) in Dark Matter Mini-Haloes at High-Resolution
- Growth of Light Seed Black Holes in the Early Universe
- Population III star formation: multiple gas phases prevent the use of an equation of state at high densities
- Zero Metallicity with Zero CPU Hours: Masses of the First Stars on the Laptop
- Impact of Population III stars on the astrophysical gravitational-wave background
- Type Ia Supernovae from First-generation Stars
- Black Hole - Neutron Star and Binary Neutron Star Mergers from Population III and II stars
- The first stars
- Studying The Effect of Radiation Pressure on Evolution of a Population III Stellar Cluster
- Radiative feedback on supermassive star formation: the massive end of the Population III initial mass function