On Potassium and Other Abundance Anomalies of Red Giants in NGC 2419
arXiv:1601.01359 · doi:10.3847/0004-637X/818/1/98
Abstract
Globular clusters are of paramount importance for testing theories of stellar evolution and early galaxy formation. Strong evidence for multiple populations of stars in globular clusters derives from observed abundance anomalies. A puzzling example is the recently detected Mg-K anticorrelation in NGC 2419. We perform Monte Carlo nuclear reaction network calculations to constrain the temperature-density conditions that gave rise to the elemental abundances observed in this elusive cluster. We find a correlation between stellar temperature and density values that provide a satisfactory match between simulated and observed abundances in NGC 2419 for all relevant elements (Mg, Si, K, Ca, Sc, Ti, and V). Except at the highest densities (~g/cm), the acceptable conditions range from ~MK at ~g/cm to ~MK at ~g/cm. This result accounts for uncertainties in nuclear reaction rates and variations in the assumed initial composition. We review hydrogen burning sites and find that low-mass stars, AGB stars, massive stars, or supermassive stars cannot account for the observed abundance anomalies in NGC 2419. Super-AGB stars could be viable candidates for the polluter stars if stellar model parameters can be fine-tuned to produce higher temperatures. Novae, either involving CO or ONe white dwarfs, could be interesting polluter candidates, but a current lack of low-metallicity nova models precludes firmer conclusions. We also discuss if additional constraints for the first-generation polluters can be obtained by future measurements of oxygen, or by evolving models of second-generation low-mass stars with a non-canonical initial composition.
24 pages, 9 Figures
References in corpus (19)
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- Super and massive AGB stars - IV. Final fates - Initial to final mass relation
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- Light nuclei in galactic globular clusters : constraints on the self-enrichment scenario from nucleosynthesis
- Exploring Anticorrelations and Light Element Variations in Northern Globular Clusters Observed by the APOGEE Survey
- NLTE determination of the aluminium abundance in a homogeneous sample of extremely metal-poor stars
- The Bizarre Chemical Inventory of NGC 2419, An Extreme Outer Halo Globular Cluster
- A General Abundance Problem for All Self-Enrichment Scenarios for the Origin of Multiple Populations in Globular Clusters
- Super and massive AGB stars - III. Nucleosynthesis in metal-poor and very metal-poor stars - Z=0.001 and 0.0001
- The evolution of two stellar populations in globular clusters I. The dynamical mixing timescale
- The age-metallicity dependence for white dwarfs
- Potassium: a new actor on the globular cluster chemical evolution stage. The case of NGC 2808
- The Gaia-ESO Survey: A globular cluster escapee in the Galactic halo
- Lithium abundances in globular cluster giants: NGC 1904, NGC 2808, and NGC 362
- Statistical Methods for Thermonuclear Reaction Rates and Nucleosynthesis Simulations
- Lithium abundances in globular cluster giants: NGC 6218 (M12) and NGC 5904 (M5)
- The recurrent nova RS Oph: A possible scenario for type Ia supernovae
Cited by in corpus (29)
- Super-AGB Stars and their role as Electron Capture Supernova progenitors
- A homogeneous analysis of globular clusters from the APOGEE survey with the BACCHUS code. I. The Northern clusters
- Bayesian Estimation of Thermonuclear Reaction Rates
- Revisiting nucleosynthesis in globular clusters: the case of NGC 2808 and the role of He and K
- Constraints on the Distance Moduli, Helium and Metal Abundances, and Ages of Globular Clusters from their RR Lyrae and Non-Variable Horizontal-Branch Stars. I. M3, M15, and M92
- Multiple stellar populations and their evolution in globular clusters: A nucleosynthesis perspective
- Gemini/GRACES Spectroscopy of Stars in Triangulum II
- On Presolar Stardust Grains from CO Classical Novae
- Spectral analysis of ultra-cool white dwarfs polluted by planetary debris
- The Potassium abundance in the globular clusters NGC104, NGC6752 and NGC6809
- Intermediate-mass asymptotic giant branch stars and sources of Al, Fe, Pd, and Hf in the solar system
- Abundances of Na, Mg, and K in the atmospheres of red giant branch stars of Galactic globular cluster 47 Tucanae
- Trends in Nuclear Astrophysics
- Sensitivity to Thermonuclear Reaction Rates in Modeling the Abundance Anomalies of NGC 2419
- r-process Abundance Patterns in the Globular Cluster M92
- Light Element Discontinuities Suggest an Early Termination of Star Formation in the Globular Cluster NGC 6402 (M14)
- Magnesium isotopes: a tool to understand self-enrichment in Globular Clusters
- A data-driven model of nucleosynthesis with chemical tagging in a lower-dimensional latent space
- On the discovery of K-enhanced and possibly Mg-depleted stars throughout the Milky Way
- APOGEE view of the globular cluster NGC 6544
- Thermonuclear Reaction Rate of Si(p,)P
- Neutrino Spectra from Nuclear Weak Interactions in -Shell Nuclei Under Astrophysical Conditions
- Potassium abundances in multiple stellar populations of the globular cluster NGC 4833
- Reaction rates for the K(p,)Ca reaction
- Experimental study of the Si(He,)P reaction and thermonuclear reaction rate of Si(,)P
- Investigating Phosphorus Abundances in a Sample of APOGEE-2 Bulge Globular Clusters
- Investigation of B and Ca levels at 8-9 MeV by Nuclear Resonance Fluorescence
- Searching for resonance states in Ne()Na
- Chemical enrichment by collapsars as the origin of the unusually high [Ba/Fe] in a massive star cluster of the dwarf galaxy NGC 1569