Galactic evolution of D, 3He and 4He
arXiv:0912.3737 · doi:10.1017/S174392131000459X
Abstract
The uncertainties which still plague our understanding of the evolution of the light nuclides D, 3He and 4He in the Galaxy are described. Measurements of the local abundance of deuterium range over a factor of 3. The observed dispersion can be reconciled with the predictions on deuterium evolution from standard Galactic chemical evolution models, if the true local abundance of deuterium proves to be high, but not too high, and lower observed values are due to depletion onto dust grains. The nearly constancy of the 3He abundance with both time and position within the Galaxy implies a negligible production of this element in stars, at variance with predictions from standard stellar models which, however, do agree with the (few) measurements of 3He in planetary nebulae. Thermohaline mixing, inhibited by magnetic fields in a small fraction of low-mass stars, could in principle explain the complexity of the overall scenario. However, complete grids of stellar yields taking this mechanism into account are not available for use in chemical evolution models yet. Much effort has been devoted to unravel the origin of the extreme helium-rich stars which seem to inhabit the most massive Galactic globular clusters. Yet, the issue of 4He evolution is far from being fully settled even in the disc of the Milky Way.
10 pages, 4 figures, invited review to appear in the Proceedings of IAU Symposium No. 268, Light Elements in the Universe (C. Charbonnel, M. Tosi, F. Primas, C. Chiappini, eds., Cambridge Univ. Press)
References in corpus (11)
- The chemical composition of the Sun
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- A Triple Main Sequence in the Globular Cluster NGC 2808
- Primordial Nucleosynthesis in the Precision Cosmology Era
- A Bitter Pill: The Primordial Lithium Problem Worsens
- What is the Total Deuterium Abundance in the Local Galactic Disk?
- Revised Primordial Helium Abundance Based on New Atomic Data
- Deuterium Abundance in the Most Metal-Poor Damped Lyman alpha System: Converging on Omega_baryons
- The Helium abundance and Delta Y / Delta Z in Lower Main Sequence stars
- Deuterium astration in the local disc and beyond
- Connecting the primordial and Galactic deuterium abundances