The Delay of Population III Star Formation by Supersonic Streaming Velocities
arXiv:1101.5493 · doi:10.1088/0004-637X/736/2/147
Abstract
It has recently been demonstrated that coherent relative streaming velocities of order 30 km / s between dark matter and gas permeated the universe on scales below a few Mpc directly after recombination. We here use a series of high-resolution moving-mesh calculations to show that these supersonic motions significantly influence the virialization of the gas in minihalos, and delay the formation of the first stars. As the gas streams into minihalos with bulk velocities around 1 km / s at z ~ 20, the additional momentum and energy input reduces the gas fractions and central densities of the halos, increasing the typical virial mass required for efficient cooling by a factor of three, and delaying Population III star formation by dz ~ 4. Since the distribution of the magnitude of the streaming velocities is narrowly peaked around a non-negligible value, this effect is important in most regions of the universe. As a consequence, the increased minimum halo mass implies a reduction of the absolute number of minihalos that can be expected to cool and form Population III stars by up to an order of magnitude. We further find that the streaming velocities increase the turbulent velocity dispersion of the minihalo gas, which could affect its ability to fragment and hence alter the mass function of the first stars.
6 pages, 5 figures, accepted for publication in ApJ
References in corpus (12)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Simulations on a Moving Mesh: The Clustered Formation of Population III Protostars
- Relative velocity of dark matter and baryonic fluids and the formation of the first structures
- Gravitational fragmentation in turbulent primordial gas and the initial mass function of Population III stars
- The Global 21 Centimeter Background from High Redshifts
- Population III star formation in a Lambda CDM universe, I: The effect of formation redshift and environment on protostellar accretion rate
- Star formation at very low metallicity. I: Chemistry and cooling at low densities
- Effect of Streaming Motion of Baryons Relative to Dark Matter on the Formation of the First Stars
- Suppression and Spatial Variation of Early Galaxies and Minihalos
- Large-scale BAO signatures of the smallest galaxies
- The impact of primordial supersonic flows on early structure formation, reionization and the lowest-mass dwarf galaxies
- Constraints on standard and non-standard early Universe models from CMB B-mode polarization
Cited by in corpus (127)
- The Assembly of the First Massive Black Holes
- The Birth of a Galaxy: Primordial Metal Enrichment and Stellar Populations
- The Birth of a Galaxy - III. Propelling reionisation with the faintest galaxies
- Formation of the First Stars
- The spectral evolution of the first galaxies. I. James Webb Space Telescope detection limits and color criteria for population III galaxies
- Galaxy Properties and UV Escape Fractions During Epoch of Reionization: Results from the Renaissance Simulations
- Modeling the Radio Background from the First Black Holes at Cosmic Dawn: Implications for the 21 cm Absorption Amplitude
- Titans of the Early Universe: The Prato Statement on the Origin of the First Supermassive Black Holes
- TOPoS: II. On the bimodality of carbon abundance in CEMP stars. Implications on the early chemical evolution of galaxies
- Impact of the Relative Motion between the Dark Matter and Baryons on the First Stars
- The signature of the first stars in atomic hydrogen at redshift 20
- Magnetic Fields in Population III Star Formation
- The 21-cm signature of the first stars during the Lyman-Werner feedback era
- Supersonic Gas Streams Enhance the Formation of Massive Black Holes in the Early Universe
- The Impact of the First Galaxies on Cosmic Dawn and Reionization
- Descendants of the first stars: the distinct chemical signature of second generation stars
- The Rise of the First Stars: Supersonic Streaming, Radiative Feedback, and 21-cm Cosmology
- Detecting the Rise and Fall of the First Stars by Their Impact on Cosmic Reionization
- Supermassive Seeds for Supermassive Black Holes
- Constraining the primordial initial mass function with stellar archaeology
- Simulations of Early Baryonic Structure Formation with Stream Velocity: II. The Gas Fraction
- The impact of the supersonic baryon-dark matter velocity difference on the z~20 21cm background
- Probing the Small-Scale Matter Power Spectrum with Large-Scale 21-cm Data
- The formation of direct collapse black holes under the influence of streaming velocities
- The Influence of Streaming Velocities on the Formation of the First Stars
- The influence of streaming velocities and Lyman-Werner radiation on the formation of the first stars
- Simulations of Early Baryonic Structure Formation with Stream Velocity: I. Halo Abundance
- Cradles of the first stars: self-shielding, halo masses, and multiplicity
- The formation of the first cosmic structures and the physics of the z~20 Universe
- The formation of massive black holes in z~30 dark matter haloes with large baryonic streaming velocities
- The Formation of the First Massive Black Holes
- A tale of two sites -- I: Inferring the properties of minihalo-hosted galaxies from current observations
- The importance of magnetic fields for the initial mass function of the first stars
- Where are the Low-Mass Population III Stars ?
- The rich complexity of 21-cm fluctuations produced by the first stars
- Detection of isolated population III stars with the James Webb Space Telescope
- Complete history of the observable 21-cm signal from the first stars during the pre-reionization era
- Formation of the first stars and black holes
- Predicting the locations of possible long-lived low-mass first stars: Importance of satellite dwarf galaxies
- Robust Velocity-induced Acoustic Oscillations at Cosmic Dawn
- Higher-order initial conditions for mixed baryon-CDM simulations
- X-ray emission from high-redshift miniquasars: self-regulating the population of massive black holes through global warming
- The First Stars
- The suppression of direct collapse black hole formation by soft X-ray irradiation
- Limits on Population III star formation in minihaloes implied by Planck
- A Standard Ruler at Cosmic Dawn
- Self-consistent Semi-analytic Modeling of Feedback During Primordial Star Formation and Reionization
- On the signature of the baryon-dark matter relative velocity in the two and three-point galaxy correlation functions
- Constraining First Star Formation with 21cm-Cosmology
- Heating the IGM by X-rays from Population III Binaries in High Redshift Galaxies
- Radiation Hydrodynamical Simulations of the First Quasars
- Streaming velocities and the baryon-acoustic oscillation scale
- Globular Clusters and Dark Satellite Galaxies through the Stream Velocity
- Magnetic Fields in the Formation of the First Stars. I. Theory vs. Simulation
- Supersonic Relative Velocity between Dark Matter and Baryons: A Review
- A New Statistical Model for Population III Supernova Rates: Discriminating Between CDM and WDM Cosmologies
- Detecting gravitationally lensed population III galaxies with the Hubble Space Telescope and the James Webb Space Telescope
- Trapping of HII regions in Population III star formation
- Formation of the first star clusters and massive star binaries by fragmentation of filamentary primordial gas clouds
- The Ultimately Large Telescope -- what kind of facility do we need to detect Population III stars?
- The 21-cm BAO signature of enriched low-mass galaxies during cosmic reionization
- Impact of baryonic streaming velocities on the formation of supermassive black holes via direct collapse
- Detectability of High-Redshift Superluminous Supernovae with Upcoming Optical and Near-Infrared Surveys - II. Beyond z=6
- Power spectra in the eikonal approximation with adiabatic and non-adiabatic modes
- Starbursts in low-mass haloes at Cosmic Dawn. I. The critical halo mass for star formation
- Observing Dark Stars with JWST
- Formation of Massive Population III Galaxies through Photoionization Feedback: A Possible Explanation for CR7
- Scaling Relations for Galaxies Prior to Reionization
- Magnetic fields in the formation of the first stars.--II Results
- Low-mass suppression of the satellite luminosity function due to the supersonic baryon--cold-dark-matter relative velocity
- The effect of baryonic streaming motions on the formation of the first supermassive black holes
- Radiation Hydrodynamical Simulations of the Birth of Intermediate-Mass Black Holes in the First Galaxies
- The First Stars: formation under X-ray feedback
- Gas rich and gas poor structures through the stream velocity effect
- Formation of the first stars
- Effects of stellar-mass primordial black holes on first star formation
- The mass function of black holes at 1<z<4.5: comparison of models with observations
- Massive black hole and Population III galaxy formation in over-massive dark matter halos with violent merger histories
- Baryon-CDM isocurvature galaxy bias with IllustrisTNG
- The Collapse of Atomically-Cooled Primordial Haloes. I. High Lyman-Werner Backgrounds
- Hybrid Cosmological Simulations with Stream Velocities
- X-ray Background at High Redshifts from Pop III Remnants: Results from Pop III star formation rates in the Renaissance Simulations
- Population III Hypernovae
- Probing ultra-light axions with the 21-cm Signal during Cosmic Dawn
- How Density Environment Changes the Influence of the Dark Matter-Baryon Streaming Velocity on the Cosmological Structure Formation
- Statistical properties of mass, star formation, chemical content and rotational patterns in early z > 9 structures
- Signatures of First Stars in Galaxy Surveys: Multi-Tracer Analysis of the Supersonic Relative Velocity Effect and the Constraints from the BOSS Power Spectrum Measurements
- Cosmological advection flows in the presence of primordial black holes as dark matter and formation of first sources
- Radiative feedback and cosmic molecular gas: numerical method
- The seeds of supermassive black holes and the role of local radiation and metal spreading
- Large-scale variation in reionization history caused by Baryon-dark matter streaming velocity
- From dark matter halos to pre-stellar cores: High resolution follow-up of cosmological Lyman-Werner simulations
- First Structure Formation under the Influence of Gas-Dark Matter Streaming Velocity and Density: Impact of the Baryons-trace-dark matter Approximation
- Tracing stars in Milky Way satellites with A-SLOTH
- First estimate of the local value of the baryonic streaming velocity
- Globular Clusters and Streaming Velocities: Testing the new formation channel in high-resolution cosmological simulations
- Global radiation signature from early structure formation
- A Model-Insensitive Baryon Acoustic Oscillation Feature in the 21 cm Signal from Reionization
- On the operation of the chemothermal instability in primordial star-forming clouds
- The First Stars: formation under cosmic ray feedback
- Measuring the cosmic expansion rate using 21-cm velocity acoustic oscillations
- The stochastic enrichment of Population II stars
- Using Artificial Neural Networks to Constrain the Halo Baryon Fraction during Reionization
- cooling and gravitational collapse of supersonically induced gas objects
- Effect of supersonic relative motion between baryons and dark matter on collapsed objects
- Probing Compensated Isocurvature with the 21-cm Signal during Cosmic Dawn
- Supersonic baryon-CDM velocities and CMB B-mode polarization
- The First Billion Years in Seconds: An Effective Model for the 21-cm Signal with Population III Stars
- The THESAN-ZOOM project: Population III star formation continues until the end of reionization
- Dwarf galaxy formation with and without dark matter-baryon streaming velocities
- Role of magnetic fields in the formation of direct collapse black holes
- Formation of First Galaxies inside Density Peaks and Voids under the Influence of Dark Matter-Baryon Streaming Velocity, I: Initial Condition and Simulation Scheme
- A Global Semi-Analytic Model of the First Stars and Galaxies Including Dark Matter Halo Merger Histories
- Shape and Spin of Minihaloes. II: The Effect of Streaming Velocities
- The Supersonic Project: The eccentricity and rotational support of SIGOs and DM GHOSts
- Constraining the non-gravitational scattering of baryons and dark matter with early cosmic structure formation
- Aeos: Transport of Metals from Minihalos following Population III Stellar Feedback
- Structure of the super-Eddington outflow and itsimpact on the cosmological scale
- Relative baryon-dark matter velocities in cosmological zoom simulations
- Impact of dark matter-baryon relative velocity on the 21cm forest
- Halo Mergers Enhance the Growth of Massive Black Hole Seeds
- The influence of baryons on low-mass haloes
- The Hydrogen Mixing Portal, Its Origins, and Its Cosmological Effects
- Luminosity Bias (II): The Cosmic Web of the First Stars
- The Effects of Dark Matter Annihilation and Dark Matter-Baryon Velocity Offsets at Cosmic Dawn
- From Dark Matter Minihalos to Large-Scale Radiative Feedback: A Self-Consistent 3D Simulation of the First Stars and Galaxies using Neural Networks
- Primordial black holes and the velocity acoustic oscillations features in 21 cm signals from the cosmic Dark Ages