The high-redshift tail of stellar reionization in LCDM is beyond the reach of the low- CMB
arXiv:2105.08737 · doi:10.1093/mnras/stab2815
Abstract
The first generation (Pop-III) stars can ionize 1-10% of the universe by , when the metal-enriched (Pop-II) stars may contribute negligibly to the ionization. This low ionization tail might leave detectable imprints on the large-scale CMB E-mode polarization. However, we show that physical models for reionization are unlikely to be sufficiently extended to detect any parameter beyond the total optical depth through reionization. This result is driven in part by the total optical depth inferred by Planck, indicating a reionization midpoint around , which in combination with the requirement that reionization completes by limits the amplitude of an extended tail. To demonstrate this, we perform semi-analytic calculations of reionization including Pop-III star formation in minihalos with Lyman-Werner feedback. We find that standard Pop-III models need to produce very extended reionization at to be distinguishable at 2- from Pop-II-only models, assuming a cosmic variance-limited measurement of the low- EE power spectrum. However, we show that unless there is (1) a late-time quenching mechanism such as from strong X-ray feedback or (2) some other extreme Pop-III scenario, structure formation makes it quite challenging to produce high enough Thomson scattering optical depth from , , and still be consistent with other observational constraints on reionization.
11 pages 4 figures + appendix
References in corpus (24)
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- Model-independent evidence in favor of an end to reionization by z~6
- Evidence of patchy hydrogen reionization from an extreme Ly trough below redshift six
- The observed ionization rate of the intergalactic medium and the ionizing emissivity at z >5: Evidence for a photon starved and extended epoch of reionization
- Conditions for Reionizing the Universe with A Low Galaxy Ionizing Photon Escape Fraction
- 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
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- Population III star formation in a Lambda CDM universe, II: Effects of a photodissociating background
- Suppression of H_2 Cooling in the Ultraviolet Background
- The HII Region of a Primordial Star
- Metal-Free Gas Supply at the Edge of Reionization: Late-Epoch Population III Star Formation
- Was Star-Formation Suppressed in High-Redshift Minihalos?
- Cradles of the first stars: self-shielding, halo masses, and multiplicity
- How Very Massive Metal Free Stars Start Cosmological Reionization
- Recovery from population III supernova explosions and the onset of second generation star formation
- The Effects of Population III X-ray and Radio Backgrounds on the Cosmological 21-cm Signal
- Heating the IGM by X-rays from Population III Binaries in High Redshift Galaxies
- Reionization inference from the CMB optical depth and E-mode polarization power spectra
- A tale of two sites -- II: Inferring the properties of minihalo-hosted galaxies with upcoming 21-cm interferometers
- X-ray Twinkles and Pop III Stars
- X-ray Background at High Redshifts from Pop III Remnants: Results from Pop III star formation rates in the Renaissance Simulations
- Beyond optical depth: Future determination of ionization history from the CMB
- Population III star explosions and Planck 2018 data
Cited by in corpus (9)
- The Impact of the First Galaxies on Cosmic Dawn and Reionization
- The VANDELS survey: a measurement of the average Lyman-continuum escape fraction of star-forming galaxies at z=3.5
- Starbursts in low-mass haloes at Cosmic Dawn. I. The critical halo mass for star formation
- AMBER: A Semi-numerical Abundance Matching Box for the Epoch of Reionization
- Constraining Warm Dark Matter and Pop III stars with the Global 21-cm Signal
- Probing the Early History of Cosmic Reionization by Future Cosmic Microwave Background Experiments
- Black holes at cosmic dawn in the redshifted 21cm signal of HI
- Signatures of reionization feedback in the near-infrared background
- Reionization process dependence of the ratio of CMB polarization power spectra at low-