A statistical method for the identification of stars enriched in neutron-capture elements from medium-resolution spectra
arXiv:1909.11463 · doi:10.1051/0004-6361/201936324
Abstract
We present an automated statistical method that uses medium-resolution spectroscopic observations of a set of stars to select those that show evidence of possessing significant amounts of neutron-capture elements. Our tool was tested against a sample of F- and G-type stars distributed among plates from the Galactic Understanding and Exploration (SEGUE) survey, including that were directed at stellar Galaxy clusters. Focusing on five spectral lines of europium in the visible window, our procedure ranked the stars by their likelihood of having enhanced content of this atomic species and identifies the objects that exhibit signs of being rich in neutron-capture elements as those scoring in the upper . We find that several of the cluster plates contain relatively large numbers of stars with significant absorption around at least three of the five selected lines. The most prominent is the globular cluster M3, where we measured a fraction of stars that are potentially rich in heavy nuclides, representing at least .
7 pages, 2 figures, accepted for publication in Astronomy & Astrophysics (v2)
References in corpus (11)
- Origin of the heavy elements in binary neutron-star mergers from a gravitational wave event
- Spectroscopic identification of r-process nucleosynthesis in a double neutron star merger
- The r-process of stellar nucleosynthesis: Astrophysics and nuclear physics achievements and mysteries
- A kilonova as the electromagnetic counterpart to a gravitational-wave source
- Optical emission from a kilonova following a gravitational-wave-detected neutron-star merger
- Determining stellar atmospheric parameters and chemical abundances of FGK stars with iSpec
- The SEGUE Stellar Parameter Pipeline. I. Description and Initial Validation Tests
- Modern stellar spectroscopy caveats
- Detection of Elements at All Three r-process Peaks in the Metal-Poor Star HD 160617
- Contribution of Neutron Star Mergers to the R-process Chemical Evolution in the Hierarchical Galaxy Formation
- Origin of the heavy elements in HD 140283. Measurement of europium abundance