Outside-In Evolution with a Twist: Metallicity Gradients and Asymmetries in the SMC

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Main Authors: Navabi, M., Carrera, R., Noël, N. E. D., De Leo, M.
Format: Preprint
Published: 2025
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author Navabi, M.
Carrera, R.
Noël, N. E. D.
De Leo, M.
author_facet Navabi, M.
Carrera, R.
Noël, N. E. D.
De Leo, M.
contents Taking advantage of the near-infrared calcium triplet lines, we determine metallicities for a sample of more than 3,500 red giant stars in the field of the Small Magellanic Cloud (SMC). We find a median metallicity of [Fe/H]=-1.05$\pm$0.01 dex with a negative metallicity gradient of -0.064$\pm$0.007 dex deg$^{-1}$ between 1.2°~to 6.0°consistent with an outside-in evolution scenario. For the first time, we detect hints of a positive metallicity gradient within 1.2°, likely reflecting radial migration or centralised chemical enrichment. Azimuthal metallicity asymmetries are detected, with flatter gradients in the eastern and southern quadrants and steeper ones in the north and west. They are consistent with tidal interaction effects from the Large Magellanic Cloud (LMC). Finally, in spite of a clear distance and velocity bifurcations in the east, they seem to share a common chemical origin, in agreement with other studies.
format Preprint
id arxiv_https___arxiv_org_abs_2511_00913
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Outside-In Evolution with a Twist: Metallicity Gradients and Asymmetries in the SMC
Navabi, M.
Carrera, R.
Noël, N. E. D.
De Leo, M.
Astrophysics of Galaxies
Taking advantage of the near-infrared calcium triplet lines, we determine metallicities for a sample of more than 3,500 red giant stars in the field of the Small Magellanic Cloud (SMC). We find a median metallicity of [Fe/H]=-1.05$\pm$0.01 dex with a negative metallicity gradient of -0.064$\pm$0.007 dex deg$^{-1}$ between 1.2°~to 6.0°consistent with an outside-in evolution scenario. For the first time, we detect hints of a positive metallicity gradient within 1.2°, likely reflecting radial migration or centralised chemical enrichment. Azimuthal metallicity asymmetries are detected, with flatter gradients in the eastern and southern quadrants and steeper ones in the north and west. They are consistent with tidal interaction effects from the Large Magellanic Cloud (LMC). Finally, in spite of a clear distance and velocity bifurcations in the east, they seem to share a common chemical origin, in agreement with other studies.
title Outside-In Evolution with a Twist: Metallicity Gradients and Asymmetries in the SMC
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2511.00913