The occurrence of nitrogen-enhanced metal-poor stars: implications for the initial mass function in the early Galactic halo
arXiv:1209.6082 · doi:10.1051/0004-6361/201219597
Abstract
Most carbon-enhanced metal-poor (CEMP) stars are thought to result from past mass transfer of He-burning material from an asymptotic giant branch (AGB) star to a low-mass companion star, which we now observe as a CEMP star. Because AGB stars of intermediate mass efficiently cycle carbon into nitrogen in their envelopes, the same evolution scenario predicts the existence of a population of nitrogen-enhanced metal-poor (NEMP) stars, with [N/Fe] > 1 and [N/C] > 0.5. Such NEMP stars are rare, although their occurrence depends on metallicity: they appear to be more common at [Fe/H] < -2.8 by about a factor of 10 compared to less metal-poor stars. We analyse the observed sample of metal-poor stars with measurements of both carbon and nitrogen to derive firm constraints on the occurrence of NEMP stars as a function of metallicity. We compare these constraints to binary population synthesis calculations in which we vary the initial distributions of mass, mass ratio and binary orbital periods. We show that the observed paucity of NEMP stars at [Fe/H] > -2.8 does not allow for large modifications in the initial mass function, as have been suggested in the literature to account for the high frequency of CEMP stars. The situation at lower metallicity is less clear, and we do not currently have stellar models to perform this comparison for [Fe/H] < -2.8. However, unless intermediate-mass AGB stars behave very differently at such low metallicity, the observed NEMP frequency at [Fe/H] < -2.8 appears incompatible with the top-heavy forms of the initial mass function suggested in the literature.
Accepted for publication in Astronomy & Astrophysics. 11 pages, 5 figures, 3 tables and 1 online appendix
References in corpus (22)
- Binary interaction dominates the evolution of massive stars
- The High Angular Resolution Multiplicity of Massive Stars
- Carbon Enhanced Metal-Poor Stars. I. Chemical Compositions of 26 Stars
- First stars VI - Abundances of C, N, O, Li, and mixing in extremely metal-poor giants. Galactic evolution of the light elements
- Stellar Multiplicity and the IMF: Most Stars Are Single
- Stellar Models and Yields of Asymptotic Giant Branch Stars
- The Frequency of Carbon-Enhanced Metal-Poor Stars in the Galaxy from the HERES sample
- Bright Metal-Poor Stars from the Hamburg/ESO Survey. I. Selection and Follow-up Observations from 329 Fields
- First stars IX -Mixing in extremely metal-poor giants. Variation of the 12C/13C, [Na/Mg] and [Al/Mg] ratios
- NLTE determination of the sodium abundance in a homogeneous sample of extremely metal-poor stars
- New Extremely Metal-Poor Stars in the Galactic Halo
- Carbon-Enhanced Metal-Poor Stars. III. Main-Sequence Turn-Off Stars from the SDSS/SEGUE Sample
- Carbon Stars in the Hamburg/ESO Survey: Abundances
- First stars X. The nature of three unevolved Carbon-Enhanced Metal-Poor stars
- Thermohaline mixing and gravitational settling in carbon-enhanced metal-poor stars
- CS 30322-023: an ultra metal-poor TP-AGB star?
- Numerical Simulations of Wind Accretion in Symbiotic Binaries
- Reaction rate uncertainties and the operation of the NeNa and MgAl chains during HBB in intermediate-mass AGB stars
- Light element abundances in carbon-enhanced metal-poor stars
- Can the third dredge-up extinguish hot-bottom burning in massive AGB stars?
- A New CEMP-s RR Lyrae Star
- Structural and Nucleosynthetic Evolution of Metal-poor and Metal-free Low and Intermediate Mass Stars
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- The Most Metal-Poor Stars. II. Chemical Abundances of 190 Metal-Poor Stars Including 10 New Stars With [Fe/H] < -3.5
- Carbon-Enhanced Metal-Poor Star Frequencies in the Galaxy: Corrections for the Effect of Evolutionary Status on Carbon Abundances
- Wind Roche-lobe overflow: Application to carbon-enhanced metal-poor stars
- Abundance Profiling of Extremely Metal-Poor Stars and Supernova Properties in the Early Universe
- Nitrogen enhancements 440 Myr after the Big Bang: super-solar N/O, a tidal disruption event or a dense stellar cluster in GN-z11?
- PopCORN: Hunting down the differences between binary population synthesis codes
- Spectroscopic analysis of metal-poor stars from LAMOST: early results
- Metal-Poor Stars Observed with the Magellan Telescope I. Constraints on Progenitor Mass and Metallicity of AGB Stars Undergoing s-Process Nucleosynthesis
- Carbon-enhanced metal-poor stars: a window on AGB nucleosynthesis and binary evolution. II. Statistical analysis of a sample of 67 CEMP- stars
- Metal-Poor Stars Observed with the Magellan Telescope II. Discovery of Four Stars with [Fe/H] < -3.5
- Three-dimensional hydrodynamical simulations of mass transfer in binary systems by a free wind
- Modelling the observed properties of carbon-enhanced metal-poor stars using binary population synthesis
- How plausible are the proposed formation scenarios of CEMP-r/s stars?
- Purveyors of fine halos: Re-assessing globular cluster contributions to the Milky Way halo build-up with SDSS-IV
- Transition of the Stellar Initial Mass Function Explored with Binary Population Synthesis
- Metal-poor stars observed with the automated planet finder telescope. I. Discovery of five carbon-enhanced metal-poor stars from LAMOST
- On the necessity of composition-dependent low-temperature opacity in metal-poor AGB stars
- Carbon-enhanced Metal-poor Stars in SDSS/SEGUE. II. Comparison of CEMP Star Frequencies with Binary Population Synthesis Models
- Unusual neutron-capture nucleosynthesis in a carbon-rich Galactic bulge star
- The Cosmic Microwave Background and the Stellar Initial Mass Function
- Nitrogen abundance in the X-ray halos of clusters and groups of galaxies
- The formation of barium giants via mass accretion in binary systems
- The metal-poor end of the Spite plateau. II. Detailed chemical investigation
- Chemical composition of two bright extremely metal-poor stars from the SDSS MARVELS pre-survey
- A Nitrogen-Enhanced Metal-Poor star discovered in the globular cluster ESO280-SC06
- The effect of including molecular opacities of variable composition on the evolution of intermediate-mass AGB stars
- Chemodynamical study of two CEMP-no stars from the Hamburg/ESO Survey
- Nucleosynthetic yields of intermediate-mass primordial to extremely metal-poor stars
- Thermal Regulation and the Star-Forming Main Sequence
- The R-Process Alliance: Exploring the cosmic scatter among ten r-process sites with stellar abundances
- Using Binary Population Synthesis to Calculate the Yields of Low- and Intermediate-Mass Binary Populations at Low Metallicity