We present a high-resolution (R ∼ 35,000), high signal-to-noise ratio (S/N > 200) Magellan/MIKE spectrum of the star RAVE J094921.8-161722, a bright (V = 11.3) metal-poor red giant star with [Fe/H] = -2.2, identified as a carbon-enhanced metal-poor (CEMP) star from the RAVE survey. We report its detailed chemical abundance signature of light fusion elements and heavy neutron-capture elements. We find J0949-1617 to be a CEMP star with s-process enhancement that must have formed from gas enriched by a prior r-process event. Light neutron-capture elements follow a low-metallicity s-process pattern, while the heavier neutron-capture elements above Eu follow an r-process pattern. The Pb abundance is high, in line with an s-process origin. Thoriu...
We report the discovery of a cool metal-poor, main-sequence star exhibiting large excesses of r-proc...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
The rapid neutron-capture or r-process is thought to produce the majority of the heavy elements (Z &...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...
© 2020. The American Astronomical Society. All rights reserved. We report on the spectroscopic analy...
© 2020. The American Astronomical Society. All rights reserved. We report the discovery of J1521-353...
© 2020. The American Astronomical Society. All rights reserved.. Extensive progress has recently bee...
The recent detection of a binary neutron star merger and the clear evidence of the decay of radioact...
A new moderately r-process-enhanced metal-poor star, RAVE J093730.5-062655, has been identified in t...
A new moderately r-process-enhanced metal-poor star, RAVE J093730.5-062655, has been identified in t...
A high-resolution spectroscopic analysis is presented for a new highly r-process-enhanced ([Eu/Fe] =...
We report the discovery of RAVE J203843.2-002333, a bright (V = 12.73), very metal-poor ([Fe/H] = -2...
All rights reserved. A new moderately r-process-enhanced metal-poor star, RAVE J093730.5-062655, has...
We report the discovery of RAVE J203843.2-002333, a bright (V = 12.73), very metal-poor ( = -2.91), ...
Metal-poor stars with measurable r-process element abundances provide key clues to the production si...
We report the discovery of a cool metal-poor, main-sequence star exhibiting large excesses of r-proc...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
The rapid neutron-capture or r-process is thought to produce the majority of the heavy elements (Z &...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...
© 2020. The American Astronomical Society. All rights reserved. We report on the spectroscopic analy...
© 2020. The American Astronomical Society. All rights reserved. We report the discovery of J1521-353...
© 2020. The American Astronomical Society. All rights reserved.. Extensive progress has recently bee...
The recent detection of a binary neutron star merger and the clear evidence of the decay of radioact...
A new moderately r-process-enhanced metal-poor star, RAVE J093730.5-062655, has been identified in t...
A new moderately r-process-enhanced metal-poor star, RAVE J093730.5-062655, has been identified in t...
A high-resolution spectroscopic analysis is presented for a new highly r-process-enhanced ([Eu/Fe] =...
We report the discovery of RAVE J203843.2-002333, a bright (V = 12.73), very metal-poor ([Fe/H] = -2...
All rights reserved. A new moderately r-process-enhanced metal-poor star, RAVE J093730.5-062655, has...
We report the discovery of RAVE J203843.2-002333, a bright (V = 12.73), very metal-poor ( = -2.91), ...
Metal-poor stars with measurable r-process element abundances provide key clues to the production si...
We report the discovery of a cool metal-poor, main-sequence star exhibiting large excesses of r-proc...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
The rapid neutron-capture or r-process is thought to produce the majority of the heavy elements (Z &...