© 2019 The Author(s). We present new observational data for the heavy elements molybdenum (Mo, Z = 42) and ruthenium (Ru, Z = 44) in F-, G-, and K-stars belonging to different substructures of the Milky Way. The range of metallicity covered is -1.0 < [Fe/H] < + 0.3. The spectra of Galactic disc stars have a high resolution of 42 000 and 75 000 and signal-to-noise ratio better than 100. Mo and Ru abundances were derived by comparing the observed and synthetic spectra in the region of Mo I lines at 5506, 5533 Å for 209 stars and Ru I lines at 4080, 4584, 4757 Å for 162 stars using the LTE approach. For all the stars, the Mo and Ru abundance determinations are obtained for the first time with an average error of 0.14 dex. This is the first ext...
Context. A renewed interest in the origin of r-process elements has been stimulated by the multi-mes...
Abundance observations indicate the presence of rapid-neutron capture (i.e., r-process) elements in ...
Aims. In this work, we aim to make a differential comparison of the neutron-capture and p-process el...
© 2019 The Author(s). We present new observational data for the heavy elements molybdenum (Mo, Z = 4...
This work presents a large consistent study of molybdenum (Mo) and ruthenium (Ru) abundances in the ...
The enrichment history of heavy neutron-capture elements in the Milky Way disc provides fundamental ...
International audienceContext. The chemical evolution of neutron capture elements in the Milky Way d...
We present a detailed analysis of the composition and nucleosynthetic origins of the heavy elements ...
Context. The chemical evolution of neutron capture elements in the Milky Way disc is still a matter ...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
Context. Elements heavier than iron are produced through neutron-capture processes in the different ...
Important insights into the formation and evolution of the Galactic disc(s) are contained in the che...
Aims. To understand the formation and evolution of the different stellar populations within our Gala...
For the production of r-process elements in our Galaxy, multiple sites have been discussed, among ot...
Aims. In this work, we aim to make a differential comparison of the neutron-capture and p-process el...
Context. A renewed interest in the origin of r-process elements has been stimulated by the multi-mes...
Abundance observations indicate the presence of rapid-neutron capture (i.e., r-process) elements in ...
Aims. In this work, we aim to make a differential comparison of the neutron-capture and p-process el...
© 2019 The Author(s). We present new observational data for the heavy elements molybdenum (Mo, Z = 4...
This work presents a large consistent study of molybdenum (Mo) and ruthenium (Ru) abundances in the ...
The enrichment history of heavy neutron-capture elements in the Milky Way disc provides fundamental ...
International audienceContext. The chemical evolution of neutron capture elements in the Milky Way d...
We present a detailed analysis of the composition and nucleosynthetic origins of the heavy elements ...
Context. The chemical evolution of neutron capture elements in the Milky Way disc is still a matter ...
We use cosmological, magnetohydrodynamical simulations of Milky Way-mass galaxies from the Auriga pr...
Context. Elements heavier than iron are produced through neutron-capture processes in the different ...
Important insights into the formation and evolution of the Galactic disc(s) are contained in the che...
Aims. To understand the formation and evolution of the different stellar populations within our Gala...
For the production of r-process elements in our Galaxy, multiple sites have been discussed, among ot...
Aims. In this work, we aim to make a differential comparison of the neutron-capture and p-process el...
Context. A renewed interest in the origin of r-process elements has been stimulated by the multi-mes...
Abundance observations indicate the presence of rapid-neutron capture (i.e., r-process) elements in ...
Aims. In this work, we aim to make a differential comparison of the neutron-capture and p-process el...