Decoding the compositions of four bright r-process-enhanced stars

Author:

Saraf Pallavi12ORCID,Prieto Carlos Allende34,Sivarani Thirupathi1,Bandyopadhyay Avrajit5ORCID,Beers Timothy C67,Susmitha A1ORCID

Affiliation:

1. Indian Institute of Astrophysics , Koramangala 2nd Block, Bangalore, 560034 , India

2. Pondicherry University , R.V. Nagar, Kalapet, Puducherry, 605014 , India

3. Instituto de Astrofísica de Canarias , E-38200 La Laguna, Tenerife , Spain

4. Departamento de Astrofísica, Universidad de La Laguna , E-38205 La Laguna, Tenerife , Spain

5. Department of Astronomy, University of Florida , Gainesville, FL 32601 , USA

6. Joint Institute for Nuclear Astrophysics-Center for the Evolution of the Elements (JINA-CEE) , USA

7. Department of Physics and Astronomy, University of Notre Dame , Notre Dame, IN 46556 , USA

Abstract

ABSTRACT There has been a concerted effort in recent years to identify the astrophysical sites of the r-process that can operate early in the galaxy. The discovery of many r-process-enhanced (RPE) stars (especially by the R-process Alliance collaboration) has significantly accelerated this effort. However, only limited data exist on the detailed elemental abundances covering the primary neutron-capture peaks. Subtle differences in the structure of the r-process pattern, such as the relative abundances of elements in the third peak, in particular, are expected to constrain the r-process sites further. Here, we present a detailed elemental-abundance analysis of four bright RPE stars selected from the HESP–GOMPA survey. Observations were carried out with the 10-m class telescope Gran Telescopio Canarias (GTC), Spain. The high spectral signal-to-noise ratios obtained allow us to derive abundances for 20 neutron-capture elements, including the third r-process peak element osmium (Os). We detect thorium (Th) in two stars, which we use to estimate their ages. We discuss the metallicity evolution of Mg, Sr, Ba, Eu, Os, and Th in r-II and r-I stars, based on a compilation of RPE stars from the literature. The strontium (Sr) abundance trend with respect to europium (Eu) suggests the need for an additional production site for Sr (similar to several earlier studies); this requirement could be milder for yttrium (Y) and zirconium (Zr). We also show that there could be some time delay between r-II and r-I star formation, based on the Mg/Th abundance ratios.

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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