Helium Abundance of the Sun: A Spectroscopic Analysis
arXiv:2408.03041 · doi:10.3847/1538-4357/ad6ccf
Abstract
Determining the He/H ratio in cool stars presents a fundamental astrophysical challenge. While this ratio is established for hot O and B stars, its extrapolation to cool stars remains uncertain due to the absence of helium lines in their observed spectra. We address this knowledge gap by focusing on the Sun as a representative cool star. We conduct spectroscopic analyses of the observed solar photospheric lines by utilizing a combination of MgH molecular lines and neutral Mg atomic lines including yet another combination of CH and C_2 molecular lines with neutral C atomic lines. Our spectroscopic analyses were further exploited by adopting solar model atmospheres constructed for distinct He/H ratios to determine the solar photospheric helium abundance. The helium abundance is determined by enforcing the fact that for an adopted model atmosphere with an appropriate He/H ratio, the derived Mg abundance from the neutral Mg atomic lines and that from the MgH molecular lines must be the same. Ditto holds for the C abundance derived from neutral C atomic lines and that from CH lines of the CH molecular band and C_2 lines from the C_2 Swan band. The estimated He/H ratio for the Sun is discussed based on the one-dimensional local thermodynamic equilibrium (1D LTE) model atmosphere. The helium abundance (He/H = 0.091(+0.019/+0.014)) obtained for the Sun serves as a critical reference point to characterize the He/H ratio of cool stars across the range in their effective temperature. Using this derived He/H ratio, the solar mass fractions are determined to be X_sun=0.7232(+0.0305/-0.0377), Y_sun=0.2633(+0.0384/-0.0311), and Z_sun=0.0135(+0.0006/-0.0007).
13 Pages, 3 Figures and 2 Tables, Accepted for publication in the Astrophysical Journal (ApJ)
References in corpus (14)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- The chemical make-up of the Sun: A 2020 vision
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- Helioseismology and Solar Abundances
- CH in stellar atmospheres: an extensive linelist
- The elemental composition of the Sun I. The intermediate mass elements Na to Ca
- An asteroseismic signature of helium ionization
- Solar Energetic Particles (Second Edition)
- Experimental and theoretical oscillator strengths of Mg I for accurate abundance analysis
- 3D non-LTE line formation of neutral carbon in the Sun
- Statistical analysis of the Si I 6560.58 Å line observed by CHASE
- Helium Enhancement in the Metal Rich Red Giants of Omega Centauri
- Discovery of relatively hydrogen-poor giants in the Galactic globular cluster Omega Centauri
- The Chemical Composition of the Solar Surface