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Consistent Gas-phase C/O Abundances from UV and Optical Emission Lines: A Robust Scale for Chemical Evolution across Cosmic Time

  • Paige M. Kelly
  • , Tucker Jones
  • , Yuguang Chen
  • , Ryan L. Sanders
  • , Danielle A. Berg
  • , Peter Senchyna
  • , Fabio Bresolin
  • , Daniel Stark

Producción científica: Articlerevisión exhaustiva

1 Cita (Scopus)

Resumen

The carbon-to-oxygen (C/O) abundance ratio is a valuable tracer of star formation history, as C and O enrichment occurs on different timescales. However, measurements based on ultraviolet (UV) collisionally excited lines and those based on optical recombination lines may be subject to biases from the abundance discrepancy factor (ADF), which is well established for oxygen but uncertain for carbon. We present precise UV-based measurements of gas-phase C2+/O2+ ionic abundance in four H ii regions, which have prior optical-based measurements, combined with archival UV data for two additional H II regions, in order to establish a reliable abundance scale and to investigate biases between the two methods. We find a clear ADF for the C2+ ion, which is consistent with that of O2+, assuming a similar temperature structure in the zones of the nebula that these ions occupy. The C/O abundance derived from UV collisional lines and optical recombination lines is therefore also consistent to within <0.1 dex, with an offset of 0.05 ± 0.03 dex in C2+/O2+ for the standard Te method. While the absolute C/H and O/H abundances are subject to large uncertainty from the ADF, our results establish that C/O abundances measured from these different methods can be reliably compared. Thus, we confirm the robustness of gas-phase C/O measurements for studying galaxy evolution and star formation timescales, including from rest-UV observations of high-redshift galaxies with JWST.

Idioma originalEnglish
Número de artículo65
PublicaciónAstrophysical Journal
Volumen993
N.º1
DOI
EstadoPublished - nov 1 2025

Nota bibliográfica

Publisher Copyright:
© 2025. The Author(s). Published by the American Astronomical Society.

Financiación

Based on observations with the NASA/ESA Hubble Space Telescope obtained from the Mikulski Archive for Space Telescopes at the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Incorporated, under NASA contract NAS5-26555. Support for Program number HST-GO-16697 was provided through a grant from the STScI under NASA contract NAS5-26555. T.J. acknowledges support from NASA under grant 80NSSC23K1132, and from a UC Davis Chancellor’s Fellowship. P.K. acknowledges support from the UC Davis Dean’s Distinguished Graduate Fellowship. Y.C. is supported by the Direct Grant for Research (C0010-4053720) from the Faculty of Science, the Chinese University of Hong Kong.Facility: HST (COS). Based on observations with the NASA/ESA Hubble Space Telescope obtained from the Mikulski Archive for Space Telescopes at the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Incorporated, under NASA contract NAS5-26555. Support for Program number HST-GO-16697 was provided through a grant from the STScI under NASA contract NAS5-26555. T.J. acknowledges support from NASA under grant 80NSSC23K1132, and from a UC Davis Chancellor’s Fellowship. P.K. acknowledges support from the UC Davis Dean’s Distinguished Graduate Fellowship. Y.C. is supported by the Direct Grant for Research (C0010-4053720) from the Faculty of Science, the Chinese University of Hong Kong.

FinanciadoresNúmero del financiador
Chinese University of Hong Kong.Facility
Chinese University of Hong Kong
Faculty of Science, Chinese University of Hong Kong
Space Telescope Science Institute
National Aeronautics and Space Administration80NSSC23K1132, NAS5-26555
Endocrine Society of AustraliaHST-GO-16697
University of California DavisC0010-4053720

    ASJC Scopus subject areas

    • Astronomy and Astrophysics
    • Space and Planetary Science

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