On the impact of spectral template uncertainties in synthetic stellar populations
arXiv:2303.16920 · doi:10.1093/mnras/stad832
Abstract
Uncertainties in stellar population models, both in terms of stellar evolution and stellar spectra, translate into uncertainties in our interpretation of stellar populations in galaxies, since stars are the source of most of the light we receive from them. Observations by JWST are revealing high-redshift galaxies in great detail, which must then be compared to models. One significant source of uncertainty is in the stellar spectra used to generate composite spectra of stellar populations, which are then compared to data. Confidence in theoretical models is important to enable reliable determination of the properties of these galaxies such as their ages and star formation history. Here we present a comparison of spectral synthesis carried out with 6 different stellar spectral libraries using the Binary Population and Spectral Synthesis (BPASS) framework. In photometric colours, the differences between theoretical libraries are relatively small (<0.10 mag), similar to typical observational uncertainties on individual galaxy observations. Differences become more pronounced when detailed spectroscopic properties are examined. Predictions for spectral line indices can vary significantly, with equivalent widths differing by a factor of two in some cases. With these index strengths, some of the libraries yield predictions of ages and metallicities which are unphysical. Many spectral libraries lack wavelength coverage in the ultraviolet, which is of growing importance in the era of JWST observations of distant galaxies, whose flux is dominated by hot, young stars.
Accepted for publication in MNRAS. Supplemental material attached as an appendix. Output data available from https://warwick.ac.uk/bpass or https://bpass.auckland.ac.nz/
References in corpus (28)
- Binary interaction dominates the evolution of massive stars
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Two Remarkably Luminous Galaxy Candidates at Revealed by JWST
- The evolution of the galaxy UV luminosity function at redshifts z ~ 8-15 from deep JWST and ground-based near-infrared imaging
- Evolutionary stellar population synthesis with MILES - II. Scaled-solar and α-enhanced models
- The Gemini Deep Deep Survey: III. The abundance of massive galaxies 3-6 billion years after the Big Bang
- Early results from GLASS-JWST. III: Galaxy candidates at z9-15
- Revealing Galaxy Candidates out to with JWST Observations of the Lensing Cluster SMACS0723
- A new library of theoretical stellar spectra with scaled-solar and alpha-enhanced mixtures
- The updated BaSTI stellar evolution models and isochrones: II. alpha-enhanced calculations
- The MOSDEF Survey: the Variation of the Dust Attenuation Curve with Metallicity
- Center-to-Limb Variation of Solar 3-D Hydrodynamical Simulations
- A large stellar evolution database for population synthesis studies. IV. Integrated properties and spectra
- Isochrones for Old (> 5 Gyr) Stars and Stellar Populations. I. Models for [Fe/H] , , and [\Fe]
- The Dependence of Theoretical Synthetic Spectra on -enhancement in Young, Binary Stellar Populations
- The VANDELS survey: the relation between UV continuum slope and stellar metallicity in star-forming galaxies at z~3
- Hoki: Making BPASS accessible through Python
- Binary population synthesis models for core-collapse gamma-ray burst progenitors
- To use or not to use synthetic stellar spectra in population synthesis models?
- MPS-ATLAS: A fast all-in-one code for synthesising stellar spectra
- The Red Supergiant Binary Fraction as a Function of Metallicity in M31 and M33
- Stromlo Stellar Tracks: non-solar scaled abundances for massive stars
- sMILES: A Library of Semi-Empirical MILES Stellar Spectra with Variable [/Fe] Abundances
- Binary evolution pathways of Blue Large-Amplitude Pulsators
- Evaluating the impact of binary parameter uncertainty on stellar population properties
- The impact of winds on the spectral appearance of Red Supergiants
- A Comparison of Rotating and Binary Stellar Evolution Models: Effects on Massive Star Populations
- Euclid legacy science prospects