A chemodynamical study of $r$-process-enhanced stars

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Saraf, Pallavi, Sivarani, Thirupathi, Prieto, Carlos Allende, Ganesh, Shashikiran, Karinkuzhi, Drisya
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866915538850021376
author Saraf, Pallavi
Sivarani, Thirupathi
Prieto, Carlos Allende
Ganesh, Shashikiran
Karinkuzhi, Drisya
author_facet Saraf, Pallavi
Sivarani, Thirupathi
Prieto, Carlos Allende
Ganesh, Shashikiran
Karinkuzhi, Drisya
contents The $r$-process enrichment in the Galaxy still remains elusive with regard to its nucleosynthesis conditions and the astrophysical sites where it occurs. As part of ongoing efforts to pinpoint the origin of chemically peculiar $r$-process-enhanced (RPE) stars, we concentrate in this study on the kinematics of RPE stars to investigate possible variations in the $r$-process enrichment among the Galactic components. We calculate the orbital parameters of a sample of 472 metal-poor RPE stars and associate them to the Galactic bulge, disk and halo populations using a physically motivated classification based on apocenter distance and maximum absolute vertical height of the orbit. We show that the Toomre diagram does not properly separate stars in the disk and halo components when they are on highly eccentric and/or retrograde orbits. The Galactic disk and halo share a similar fraction of RPE stars, in contrast to the earlier perception that the majority of RPE stars belong to the halo. We find that the stars most likely to be accreted belong to the halo. However, 3/4 of the stars lie in a mixed-zone. The inner disk, inner halo and outer halo stars exhibit similar abundance trends for the n-capture elements.
format Preprint
id arxiv_https___arxiv_org_abs_2510_06630
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A chemodynamical study of $r$-process-enhanced stars
Saraf, Pallavi
Sivarani, Thirupathi
Prieto, Carlos Allende
Ganesh, Shashikiran
Karinkuzhi, Drisya
Solar and Stellar Astrophysics
Astrophysics of Galaxies
The $r$-process enrichment in the Galaxy still remains elusive with regard to its nucleosynthesis conditions and the astrophysical sites where it occurs. As part of ongoing efforts to pinpoint the origin of chemically peculiar $r$-process-enhanced (RPE) stars, we concentrate in this study on the kinematics of RPE stars to investigate possible variations in the $r$-process enrichment among the Galactic components. We calculate the orbital parameters of a sample of 472 metal-poor RPE stars and associate them to the Galactic bulge, disk and halo populations using a physically motivated classification based on apocenter distance and maximum absolute vertical height of the orbit. We show that the Toomre diagram does not properly separate stars in the disk and halo components when they are on highly eccentric and/or retrograde orbits. The Galactic disk and halo share a similar fraction of RPE stars, in contrast to the earlier perception that the majority of RPE stars belong to the halo. We find that the stars most likely to be accreted belong to the halo. However, 3/4 of the stars lie in a mixed-zone. The inner disk, inner halo and outer halo stars exhibit similar abundance trends for the n-capture elements.
title A chemodynamical study of $r$-process-enhanced stars
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2510.06630