Metal-poor stars with measurable r-process element abundances provide key clues to the production site(s) of the r-process and how its products are mixed with the surrounding medium. While the number of stars exhibiting strong enhancements of r-process elements has grown over the years, the lower "floor" of r-process enrichment in metal-poor stars has yet to be established, largely in part due to the difficulty in detecting weak neutron-capture element absorption lines in stellar spectra. Here we present detailed abundances of 16 neutron-capture elements for a star exhibiting the lowest level of r-process enrichment yet detected and still following the solar system r-process pattern. Taken into consideration with most of the r- process enri...
The recent detection of a binary neutron star merger and the clear evidence of the decay of radioact...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
The chemical abundances of the very metal-poor double-enhanced stars are excellent information for s...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
© 2020. The American Astronomical Society. All rights reserved. We report on the spectroscopic analy...
We present a high-resolution (R ∼ 35,000), high signal-to-noise ratio (S/N > 200) Magellan/MIKE spec...
Recent observations of r-process-enriched metal-poor star abundances reveal a non-uniform abundance ...
New measurements of neutron-capture elements are presented for two very metal-poor stars ([Fe/H] ~ -...
The rapid neutron-capture (r-)process, is responsible for the creation of about half the elements he...
Abstract Neutron star mergers (NSMs) are promising astrophysical sites for the rapid...
Context. The origin and site(s) of the r-process nucleosynthesis is(are) still not known with certai...
The origin of the heaviest elements is still a matter of debate. For the rapid neutron capture proce...
Abundances of heavier elements (barium and beyond) in many neutron-capture-element-rich halo stars a...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
The recent detection of a binary neutron star merger and the clear evidence of the decay of radioact...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
The chemical abundances of the very metal-poor double-enhanced stars are excellent information for s...
We present detailed chemical abundances of three new bright (V ∼ 11), extremely metal-poor ([Fe/H] ∼...
To better characterize the abundance patterns produced by the r-process, we have derived new abundan...
© 2020. The American Astronomical Society. All rights reserved. We report on the spectroscopic analy...
We present a high-resolution (R ∼ 35,000), high signal-to-noise ratio (S/N > 200) Magellan/MIKE spec...
Recent observations of r-process-enriched metal-poor star abundances reveal a non-uniform abundance ...
New measurements of neutron-capture elements are presented for two very metal-poor stars ([Fe/H] ~ -...
The rapid neutron-capture (r-)process, is responsible for the creation of about half the elements he...
Abstract Neutron star mergers (NSMs) are promising astrophysical sites for the rapid...
Context. The origin and site(s) of the r-process nucleosynthesis is(are) still not known with certai...
The origin of the heaviest elements is still a matter of debate. For the rapid neutron capture proce...
Abundances of heavier elements (barium and beyond) in many neutron-capture-element-rich halo stars a...
We use a large set of high S/N, high resolution spectra of 19 stars with -2.8 <[Fe/H]< 0 to study th...
The recent detection of a binary neutron star merger and the clear evidence of the decay of radioact...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
The chemical abundances of the very metal-poor double-enhanced stars are excellent information for s...