Ultraviolet photon production rates of the first stars: Impact on the He II 1640 Å emission line from primordial star clusters and the 21-cm signal from cosmic dawn
arXiv:2507.21764 · doi:10.1093/mnras/stag386
Abstract
The first stars, the chemically pristine Population III, likely played an important role in heating the intergalactic medium during the epoch of cosmic dawn. The very high effective temperatures ( K) predicted for the most massive Population III stars could also give rise to tell-tale signatures in the emission-line spectra of early star clusters or small galaxies dominated by such stars. Important quantities in modelling their observational signatures include their photon production rates at ultraviolet energies at which photons are able to ionize hydrogen and helium, dissociate molecular hydrogen and cause Lyman- heating. Here, we model the spectral energy distributions of Population III stars to explore how these key quantities are affected by the initial mass and rotation of Population III stars given a wide range of models for the evolution of these stars. Our results indicate that rotating Population III stars that evolve to effective temperatures K could potentially give rise to a very strong HeII 1640 emission line in the spectra from primordial star clusters, without requiring stellar masses of indicated by previous models for non-rotating Population III stars. The observable impact on 21-cm signatures from cosmic dawn and the epoch of reionization from our set of rotating stars that evolve to K is modest, except in case of high Population~III star formation efficiencies which imprint potentially detectable features in the global 21-cm signal and 21-cm power spectrum.
14 pages, 9 figures. Accepted for publication in MNRAS
References in corpus (39)
- The Birth of a Massive First-Star Binary
- Diagnostics for PopIII galaxies and Direct Collapse Black Holes in the early universe
- The Impact of the First Galaxies on Cosmic Dawn and Reionization
- When did Population III star formation end?
- JWST-JADES. Possible Population III signatures at z=10.6 in the halo of GN-z11
- The subtlety of Ly-a photons: changing the expected range of the 21-cm signal
- The rich complexity of 21-cm fluctuations produced by the first stars
- An extremely metal poor star complex in the reionization era: Approaching Population III stars with JWST
- Zero-metallicity hypernova uncovered by an ultra metal-poor star in the Sculptor dwarf spheroidal galaxy
- Heating and cooling of the intergalactic medium by resonance photons
- Grids of stellar models with rotation: V. Models from 1.7 to 120 Msun at zero metallicity
- A needle in a haystack? Catching Pop III stars in the Epoch of Reionization: I. Pop III star forming environments
- Impact of the Primordial Stellar Initial Mass Function on the 21-cm Signal
- Characterization of Population III Stars with Stellar Atmosphere and Evolutionary Modeling and Predictions of their Observability with the James Webb Space Telescope
- SPLUSJ210428.01-004934.2: An Ultra Metal-Poor Star Identified from Narrowband Photometry
- A strong He II 1640 emitter with extremely blue UV spectral slope at : presence of Pop III stars?
- Evolutionary tracks, ejecta, and ionizing photons from intermediate-mass to very massive stars with PARSEC
- A Study of Primordial Very Massive Star Evolution
- Metal Mixing in Minihalos: The Descendants of Pair-Instability Supernovae
- Stellar winds and metal enrichment from fast-rotating Population III stars
- Boosting Lya and HeII 1640A Line Fluxes from Pop III Galaxies: Stochastic IMF Sampling and Departures from Case-B
- Rapidly rotating Population III stellar models as a source of primary nitrogen
- Very Massive Star Models: I. Impact of Rotation and Metallicity and Comparisons with Observations
- Potential signature of Population III pair-instability supernova ejecta in the BLR gas of the most distant quasar at z = 7.54
- Exploiting synergies between JWST and cosmic 21-cm observations to uncover star formation in the early Universe
- A-SLOTH reveals the nature of the first stars
- True Pair-instability Supernova Descendant: Implications for the First Stars' Mass Distribution
- Evidence of Pop~III stars' chemical signature in neutral gas at z~6. A study based on the E-XQR-30 spectroscopic sample
- Ionizing photon production of Population III stars: effects of rotation, convection, and initial mass function
- Chemical Diagnostics to Unveil Environments Enriched by First Stars
- The Evolution of Population III and Extremely Metal-Poor Binary Stars
- Signatures of Rapidly Rotating Stars with Chemically Homogeneous Evolution in the First Galaxies
- Detecting Population III Stars through Tidal Disruption Events in the Era of JWST and Roman
- A Study of Primordial Very Massive Star Evolution. II. Stellar Rotation and Gamma-Ray Burst Progenitors
- 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
- GLIMPSE: An ultra-faint 10 Pop III Galaxy Candidate and First Constraints on the Pop III UV Luminosity Function at
- Semi-analytic modelling of Pop. III star formation and metallicity evolution -- II. Impact on 21cm power spectrum
- Spectral Evolution of Rotating Population III Stars