A New Precise Determination of the Primordial Abundance of Deuterium: Measurement in the metal-poor sub-DLA system at z=3.42 towards quasar J1332+0052
arXiv:2401.12797 · doi:10.1093/mnras/stae248
Abstract
The theory of Big Bang nucleosynthesis, coupled with an estimate of the primordial deuterium abundance (D/H)_pr, offers insights into the baryon density of the Universe. Independently, the baryon density can be constrained during a different cosmological era through the analysis of cosmic microwave background (CMB) anisotropy. The comparison of these estimates serves as a rigorous test for the self-consistency of the Standard Cosmological Model and stands as a potent tool in the quest for new physics beyond the Standard Model of Particle Physics. For a meaningful comparison, a clear understanding of the various systematic errors affecting deuterium measurements is crucial. Given the limited number of D/H measurements, each new estimate carries significant weight. This study presents the detection of DI absorption lines in a metal-poor sub-Damped Lyman-alpha system ([O/H]=-1.71+-0.02, logN(HI)=19.304+-0.004) at z_abs=3.42 towards the quasar J1332+0052. Through simultaneous fitting of HI and DI Lyman-series lines, as well as low-ionization metal lines, observed at high spectral resolution and high signal-to-noise using VLT/UVES and Keck/HIRES, we derive log(DI/HI)=-4.622+-0.014, accounting for statistical and systematic uncertainties of 0.008dex and 0.012dex, respectively. Thanks to negligible ionization corrections and minimal deuterium astration at low metallicity, this D/H ratio provides a robust measurement of the primordial deuterium abundance, consistent and competitive with previous works. Incorporating all prior measurements, the best estimate of the primordial deuterium abundance is constrained as: (D/H)_pr=(2.533+-0.024)*10^-5. This represents a 5% improvement in precision over previous studies and reveals a moderate tension with the expectation from the Standard Model (~2.2sig). This discrepancy underscores the importance of further measurements in the pursuit of new physics.
15 pages, 18 figures. Accepted for publication in MNRAS
References in corpus (13)
- C, N, O Abundances in the Most Metal-Poor Damped Lyman alpha Systems
- The primordial deuterium abundance of the most metal-poor damped Lyman-alpha system
- A new tension in the cosmological model from primordial deuterium?
- EMPRESS. VIII. A New Determination of Primordial He Abundance with Extremely Metal-Poor Galaxies: A Suggestion of the Lepton Asymmetry and Implications for the Hubble Tension
- The PHLEK Survey: A New Determination of the Primordial Helium Abundance
- A robust deuterium abundance; Re-measurement of the z=3.256 absorption system towards the quasar PKS1937-1009
- Large Metallicity Variations in the Galactic Interstellar Medium
- A new determination of the primordial helium abundance using the analyses of HII region spectra from SDSS
- Chemical abundances in 7 metal-poor HII regions and a determination of the primordial helium abundance
- About Metallicity Variations in the Local Galactic Interstellar Medium
- Determination of HII region metallicity in the context of estimating the primordial helium abundance
- Chemical diversity of gas in distant galaxies: The metal and dust enrichment and variations within absorbing galaxies
- The CUBES Science Case
Cited by in corpus (7)
- Constraints on primordial lepton asymmetries with full neutrino transport
- Neutrino at different epochs of the Friedmann Universe
- Big Bang Nucleosynthesis with gravity scalarons and astrophysical consequences
- Primordial neutrinos fade to gray: constraints from cosmological observables
- Return of the Lepton Number: Sterile Neutrino Dark Matter Production and the Revival of the Shi-Fuller Mechanism
- Fifty shades of grayness: parametrizations of spectral distortions and applications in cosmology
- Possible explanation of primordial Li deficit