Cluster Ages to Reconstruct the Milky Way Assembly (CARMA) IV. Chrono-dynamics of seven old star clusters in the Large Magellanic Cloud and the peculiar origin of NGC 1841

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Main Authors: Niederhofer, F., Massari, D., Aguado-Agelet, F., Cassisi, S., Bellini, A., Kozhurina-Platais, V., Libralato, M., Kacharov, N., Mucciarelli, A., Monelli, M., Bastian, N., Cabrera-Ziri, I., Ceccarelli, E., Cioni, M. -R. L., Dresbach, F., Häberle, M., Martocchia, S., Saracino, S.
Format: Preprint
Published: 2025
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author Niederhofer, F.
Massari, D.
Aguado-Agelet, F.
Cassisi, S.
Bellini, A.
Kozhurina-Platais, V.
Libralato, M.
Kacharov, N.
Mucciarelli, A.
Monelli, M.
Bastian, N.
Cabrera-Ziri, I.
Ceccarelli, E.
Cioni, M. -R. L.
Dresbach, F.
Häberle, M.
Martocchia, S.
Saracino, S.
author_facet Niederhofer, F.
Massari, D.
Aguado-Agelet, F.
Cassisi, S.
Bellini, A.
Kozhurina-Platais, V.
Libralato, M.
Kacharov, N.
Mucciarelli, A.
Monelli, M.
Bastian, N.
Cabrera-Ziri, I.
Ceccarelli, E.
Cioni, M. -R. L.
Dresbach, F.
Häberle, M.
Martocchia, S.
Saracino, S.
contents In this study, we report conclusive evidence for an ancient star cluster that has been accreted by the Large Magellanic Cloud (LMC). By leveraging observations from the Hubble Space Telescope (HST), we investigate the chrono-dynamical structure of a sample of seven old star clusters within the LMC in a self-consistent way. The multi-epoch nature of the dataset allowed the determination of high-precision proper motions for the clusters. Employing an isochrone-fitting methodology, we additionally infer from the deep high-resolution HST data homogeneous and robust estimates for their distances, ages and metallicities. Supplementing these data with literature line-of-sight velocities, we investigate the full 3-dimensional dynamics of the clusters within the frame of the LMC. With respect to the other clusters in our sample, NGC 1841 depicts a peculiar case. Its position in the age-metallicity plane, that makes it about 1 Gyr younger than the other metal-poor LMC clusters, but also its dynamical properties with a radial orbit almost perpendicular to the LMC disc plane, clearly advocates for a different origin. We thus conclude that NGC 1841 has likely been accreted by the LMC from a smaller galaxy. The other clusters in our sample show disc-like kinematics, with the case of NGC 2210 being peculiar, based on its inclined orbit. Their coherent age-metallicity relation closely resembles that of Gaia-Sausage-Enceladus globular clusters, thus suggesting a similar early evolution for the two dwarf galaxies. We do not find clear-cut chrono-kinematic evidence that NGC 2005 has been accreted by the LMC as suggested by a previous study based on its chemical abundance pattern. Regardless of its nature, its very old age illustrates that peculiar chemical evolutions already emerge at very early times.
format Preprint
id arxiv_https___arxiv_org_abs_2509_10144
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Cluster Ages to Reconstruct the Milky Way Assembly (CARMA) IV. Chrono-dynamics of seven old star clusters in the Large Magellanic Cloud and the peculiar origin of NGC 1841
Niederhofer, F.
Massari, D.
Aguado-Agelet, F.
Cassisi, S.
Bellini, A.
Kozhurina-Platais, V.
Libralato, M.
Kacharov, N.
Mucciarelli, A.
Monelli, M.
Bastian, N.
Cabrera-Ziri, I.
Ceccarelli, E.
Cioni, M. -R. L.
Dresbach, F.
Häberle, M.
Martocchia, S.
Saracino, S.
Astrophysics of Galaxies
In this study, we report conclusive evidence for an ancient star cluster that has been accreted by the Large Magellanic Cloud (LMC). By leveraging observations from the Hubble Space Telescope (HST), we investigate the chrono-dynamical structure of a sample of seven old star clusters within the LMC in a self-consistent way. The multi-epoch nature of the dataset allowed the determination of high-precision proper motions for the clusters. Employing an isochrone-fitting methodology, we additionally infer from the deep high-resolution HST data homogeneous and robust estimates for their distances, ages and metallicities. Supplementing these data with literature line-of-sight velocities, we investigate the full 3-dimensional dynamics of the clusters within the frame of the LMC. With respect to the other clusters in our sample, NGC 1841 depicts a peculiar case. Its position in the age-metallicity plane, that makes it about 1 Gyr younger than the other metal-poor LMC clusters, but also its dynamical properties with a radial orbit almost perpendicular to the LMC disc plane, clearly advocates for a different origin. We thus conclude that NGC 1841 has likely been accreted by the LMC from a smaller galaxy. The other clusters in our sample show disc-like kinematics, with the case of NGC 2210 being peculiar, based on its inclined orbit. Their coherent age-metallicity relation closely resembles that of Gaia-Sausage-Enceladus globular clusters, thus suggesting a similar early evolution for the two dwarf galaxies. We do not find clear-cut chrono-kinematic evidence that NGC 2005 has been accreted by the LMC as suggested by a previous study based on its chemical abundance pattern. Regardless of its nature, its very old age illustrates that peculiar chemical evolutions already emerge at very early times.
title Cluster Ages to Reconstruct the Milky Way Assembly (CARMA) IV. Chrono-dynamics of seven old star clusters in the Large Magellanic Cloud and the peculiar origin of NGC 1841
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2509.10144