Chemical Abundances in the Leiptr Stellar Stream: A Disrupted Ultra-faint Dwarf Galaxy?

Fuente: arXiv
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Autori principali: Atzberger, Kaia R., Usman, Sam A., Ji, Alexander P., Cullinane, Lara R., Erkal, Denis, Hansen, Terese T., Lewis, Geraint F., Li, Ting S., Limberg, Guilherme, Luna, Alice, Martell, Sarah L., McKenzie, Madeleine, Pace, Andrew B., Zucker, Daniel B.
Natura: Preprint
Pubblicazione: 2024
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author Atzberger, Kaia R.
Usman, Sam A.
Ji, Alexander P.
Cullinane, Lara R.
Erkal, Denis
Hansen, Terese T.
Lewis, Geraint F.
Li, Ting S.
Limberg, Guilherme
Luna, Alice
Martell, Sarah L.
McKenzie, Madeleine
Pace, Andrew B.
Zucker, Daniel B.
author_facet Atzberger, Kaia R.
Usman, Sam A.
Ji, Alexander P.
Cullinane, Lara R.
Erkal, Denis
Hansen, Terese T.
Lewis, Geraint F.
Li, Ting S.
Limberg, Guilherme
Luna, Alice
Martell, Sarah L.
McKenzie, Madeleine
Pace, Andrew B.
Zucker, Daniel B.
contents Chemical abundances of stellar streams can be used to determine the nature of a stream's progenitor. Here we study the progenitor of the recently discovered Leiptr stellar stream, which was previously suggested to be a tidally disrupted halo globular cluster. We obtain high-resolution spectra of five red giant branch stars selected from the Gaia DR2 STREAMFINDER catalog with Magellan/MIKE. One star is a clear non-member. The remaining four stars display chemical abundances consistent with those of a low-mass dwarf galaxy: they have a low mean metallicity, $\langle{\rm[Fe/H]}\rangle = -2.2$; they do not all have identical metallicities; and they display low [$α$/Fe] $\sim 0$ and [Sr/Fe] and [Ba/Fe] $\sim -1$. This pattern of low $α$ and neutron-capture element abundances is only found in intact dwarf galaxies with stellar mass $\lesssim 10^5 M_\odot$. Although more data are needed to be certain, Leiptr's chemistry is consistent with being the lowest-mass dwarf galaxy stream without a known intact progenitor, possibly in the mass range of ultra-faint dwarf galaxies. Leiptr thus preserves a record of one of the lowest-mass early accretion events into the Milky Way.
format Preprint
id arxiv_https___arxiv_org_abs_2410_17312
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Chemical Abundances in the Leiptr Stellar Stream: A Disrupted Ultra-faint Dwarf Galaxy?
Atzberger, Kaia R.
Usman, Sam A.
Ji, Alexander P.
Cullinane, Lara R.
Erkal, Denis
Hansen, Terese T.
Lewis, Geraint F.
Li, Ting S.
Limberg, Guilherme
Luna, Alice
Martell, Sarah L.
McKenzie, Madeleine
Pace, Andrew B.
Zucker, Daniel B.
Astrophysics of Galaxies
Solar and Stellar Astrophysics
Chemical abundances of stellar streams can be used to determine the nature of a stream's progenitor. Here we study the progenitor of the recently discovered Leiptr stellar stream, which was previously suggested to be a tidally disrupted halo globular cluster. We obtain high-resolution spectra of five red giant branch stars selected from the Gaia DR2 STREAMFINDER catalog with Magellan/MIKE. One star is a clear non-member. The remaining four stars display chemical abundances consistent with those of a low-mass dwarf galaxy: they have a low mean metallicity, $\langle{\rm[Fe/H]}\rangle = -2.2$; they do not all have identical metallicities; and they display low [$α$/Fe] $\sim 0$ and [Sr/Fe] and [Ba/Fe] $\sim -1$. This pattern of low $α$ and neutron-capture element abundances is only found in intact dwarf galaxies with stellar mass $\lesssim 10^5 M_\odot$. Although more data are needed to be certain, Leiptr's chemistry is consistent with being the lowest-mass dwarf galaxy stream without a known intact progenitor, possibly in the mass range of ultra-faint dwarf galaxies. Leiptr thus preserves a record of one of the lowest-mass early accretion events into the Milky Way.
title Chemical Abundances in the Leiptr Stellar Stream: A Disrupted Ultra-faint Dwarf Galaxy?
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2410.17312