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Modeling the High-Energy Ionizing Output from Simple Stellar and X-ray Binary Populations

Authors :
Garofali, Kristen
Basu-Zych, Antara R.
Johnson, Benjamin D.
Tzanavaris, Panayiotis
Jaskot, Anne
Richardson, Chris T.
Lehmer, Bret D.
Yukita, Mihoko
Hodges-Kluck, Edmund
Hornschemeier, Ann
Ptak, Andrew
Vulic, Neven
Publication Year :
2023

Abstract

We present a methodology for modeling the joint ionizing impact due to a "simple X-ray population" (SXP) and its corresponding simple stellar population (SSP), where "simple" refers to a single age and metallicity population. We construct composite spectral energy distributions (SEDs) including contributions from ultra-luminous X-ray sources (ULXs) and stars, with physically meaningful and consistent consideration of the relative contributions of each component as a function of instantaneous burst age and stellar metallicity. These composite SEDs are used as input for photoionization modeling with Cloudy, from which we produce a grid for the time- and metallicity-dependent nebular emission from these composite populations. We make the results from the photoionization simulations publicly available. We find that the addition of the SXP prolongs the high-energy ionizing output from the population, and correspondingly increases the intensity of nebular lines such as He II $\lambda$1640,4686, [Ne V] $\lambda$3426,14.3$\mu$m, and [O IV] 25.9$\mu$m by factors of at least two relative to models without an SXP spectral component. This effect is most pronounced for instantaneous bursts of star formation on timescales $>$ 10 Myr and at low metallicities ($\sim$ 0.1 $Z_{\odot}$), due to the imposed time- and metallicity-dependent behavior of the SXP relative to the SSP. We propose nebular emission line diagnostics accessible with JWST suitable for inferring the presence of a composite SXP + SSP, and discuss how the ionization signatures compare to models for sources such as intermediate mass black holes.<br />Comment: accepted for publication in ApJ; simulation results available through FSPS (see Section 5.4)

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2307.00050
Document Type :
Working Paper