On the Possible Sources of D/H Dispersion at High Redshift
arXiv:astro-ph/0107389 · doi:10.1086/323968
Abstract
Recent observations suggest the existence of a white dwarf population in the Galactic halo, while others suggest that deuterium has been astrated in systems at high redshift and low metallicity. We propose that these observations could be signatures of an early population of intermediate-mass stars. Such a population requires a Population III initial mass function different from that of the solar neighborhood, as perhaps also suggested by the observed cosmic infrared background. Also, to avoid overproduction of C and N, it is required that the Z=0 yields of these stars have low ( solar) abundances as suggested by some recent calculations. Under these assumptions, we present a model which reproduces the observed D vs Si trend, and predicts a high cosmic Type Ia supernova rate, while producing a white dwarf population that accounts for only 1.5% of the dark halo. This scenario can be tested by observations of the cosmic supernova rate, and by confirmation and further studies of the putative white dwarf halo population.
AASTeX, 17 pages, 3 embedded eps figs
References in corpus (14)
- The 2dF Galaxy Redshift Survey: Near Infrared Galaxy Luminosity Functions
- The Cosmic Infrared Background: Measurements and Implications
- Direct Detection of Galactic Halo Dark Matter
- Zero-metallicity stars I. Evolution at constant mass
- A New Measurement of the Primordial Abundance of Deuterium: Toward Convergence with the Baryon Density from the CMB?
- The NACRE Thermonuclear Reaction Compilation and Big Bang Nucleosynthesis
- Evolution and Nucleosynthesis of Zero Metal Intermediate Mass Stars
- High-velocity white dwarfs: thick disk, not dark matter
- A new deuterium abundance measurement from a damped Ly-alpha system at z_abs = 3.025
- Halo White Dwarfs, Thick Disks and a Sanity Check
- On the possible existence of a self-regulating hydrodynamical process in slowly rotating stars II. Lithium Plateau in Halo Stars and Primordial Abundance
- New HST spectra indicate the QSO PG1718+4807 will not give the primordial deuterium abundance
- Deuterium at high redshift: primordial or evolved ?
- D/H Measurements
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- Primordial Nucleosynthesis for the New Cosmology: Determining Uncertainties and Examining Concordance
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- Nucleosynthesis Constraints on a Massive Gravitino in Neutralino Dark Matter Scenarios
- The Deuterium-to-Hydrogen Ratio in a Low-Metallicity Cloud Falling onto the Milky Way
- Deuterium astration in the local disc and beyond
- Cosmic Star Formation, Reionization, and Constraints on Global Chemical Evolution
- A robust deuterium abundance; Re-measurement of the z=3.256 absorption system towards the quasar PKS1937-1009
- D/H in a new Lyman limit quasar absorption system at z=3.256 towards PKS1937-1009
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- Higher D or Li: Probes of Physics beyond the Standard Model
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- The Chemical Evolution of Mg Isotopes vs. the Time Variation of the Fine Structure Constant
- Deuterium Toward Two Milky Way Disk Stars: Probing Extended Sight Lines with the Far Ultraviolet Spectroscopic Explorer
- Deuterium at high-redshift: Primordial abundance in the zabs = 2.621 damped Ly-alpha system towards CTQ247
- The Fine-structure Constant as a Probe of Chemical Evolution and AGB Nucleosynthesis in Damped Lyman-alpha Systems
- Evolution of dispersion in the cosmic deuterium abundance
- Do primordial Lithium abundances imply there's no Dark Energy?
- Primordial deuterium abundance at z=2.504 towards Q1009+2956
- Cosmic Chemical Evolution with an Early Population of Intermediate Mass Stars
- The Deuterium Abundance in the z=0.7 absorber towards QSO PG1718+4807
- Cosmological Deuterium Production in Non-Standard Scenarios