Characterization of Population III Stars with Stellar Atmosphere and Evolutionary Modeling and Predictions of their Observability with the James Webb Space Telescope
arXiv:2210.09185 · doi:10.3847/1538-3881/ac9b43
Abstract
Population III stars were the first stars to form after the Big Bang, and are believed to have made the earliest contribution to the metal content of the universe beyond the products of the Big Bang Nucleosynthesis. These stars are theorized to have had extremely short lifespans, and therefore would only be observable at high redshifts () and faint apparent magnitudes (). The direct detection of Population III stars therefore remains elusive. However, the recently launched James Webb Space Telescope (JWST) may be capable of detecting stars in the relevant magnitude range in the event of favorable gravitational lensing. Theoretical models are required to interpret these future observations. In this study, new evolutionary models and non-equilibrium model atmospheres were used to characterize the observable properties of zero-age main sequence Population III stars. The calculated models cover a wide range of possible Population III stellar masses, from the minimum mass predicted by star formation studies to the maximum mass capable of maintaining hydrostatic equilibrium. Synthetic photometry and theoretical color-magnitude diagrams were calculated for the bands of the Near-Infrared Camera (NIRCam) on JWST. The final results are compared to the scales of known lensing events and JWST magnitude limits. The purpose of this study is to calculate the observable parameters of Population III stars in the most optimal JWST bands in order to provide a theoretical foundation for anticipated future observations of this stellar population.
References in corpus (25)
- Array Programming with NumPy
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- 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
- Fragmentation of star-forming clouds enriched with the first dust
- Techniques and Review of Absolute Flux Calibration from the Ultraviolet to the Mid-Infrared
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- The evolution of rotating very massive stars with LMC composition
- A Highly Magnified Star at Redshift 6.2
- Metal-Free Gas Supply at the Edge of Reionization: Late-Epoch Population III Star Formation
- When did Population III star formation end?
- The lowest detected stellar Fe abundance: The halo star SMSS J160540.18-144323.1
- Chemical abundances in 7 metal-poor HII regions and a determination of the primordial helium abundance
- Primordial star clusters at extreme magnification
- On the Evolution of Supermassive Primordial Stars in Cosmological Flows
- Formation of the first galaxies in the aftermath of the first supernovae
- Stellar winds and metal enrichment from fast-rotating Population III stars
- Exploring the Hubble Tension and Spatial Curvature from the Ages of Old Astrophysical Objects
- On the probability of the extremely lensed =6.2 Earendel source being a Population~III star
- The HST large programme on Centauri -- V. Exploring the Ultracool Dwarf Population with Stellar Atmosphere and Evolutionary Modelling
- Impact of Population III homogeneous stellar evolution on early cosmic reionisation
- The Luminosity of Population III Star Clusters
- When did the initial mass function become bottom-heavy?
Cited by in corpus (14)
- Gravitational Wave Astronomy With TianQin
- RIGEL: Simulating dwarf galaxies at solar mass resolution with radiative transfer and feedback from individual massive stars
- Modelling the cosmological Lyman-Werner background radiation field in the Early Universe
- Gravitational waves from mergers of Population III binary black holes: roles played by two evolution channels
- The First Billion Years in Seconds: An Effective Model for the 21-cm Signal with Population III Stars
- 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
- Effects of chemically homogeneous evolution of the first stars on the 21-cm signal and reionization
- A High-Resolution Spectroscopic Survey of Directly Imaged Companion Hosts: II. Diversity in C/O Ratios among Host Stars
- 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
- Radiation magnetohydrodynamics simulations of Population III star formation during the Epoch of Reionization
- Black Hole - Neutron Star and Binary Neutron Star Mergers from Population III and II stars
- Heavy dark matter in rapidly evolving massive stars
- The Cohesive Object Sequence: The Mass-Density Distribution of Astronomical Objects from Asteroids to Stars