A Bimodal Metallicity Distribution Function in the Ultra-Faint Dwarf Galaxy Reticulum II

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Luna, Alice M., Ji, Alexander P., Chiti, Anirudh, Simon, Joshua D., Kelson, Daniel D., Go, Minsung, Limberg, Guilherme, Li, Ting S., Frebel, Anna
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866909915141898240
author Luna, Alice M.
Ji, Alexander P.
Chiti, Anirudh
Simon, Joshua D.
Kelson, Daniel D.
Go, Minsung
Limberg, Guilherme
Li, Ting S.
Frebel, Anna
author_facet Luna, Alice M.
Ji, Alexander P.
Chiti, Anirudh
Simon, Joshua D.
Kelson, Daniel D.
Go, Minsung
Limberg, Guilherme
Li, Ting S.
Frebel, Anna
contents Star formation in ultra-faint dwarf galaxies (UFDs, $M_* <10^5M_\odot$) is suppressed by reionization, but may not be completely quenched. The metallicity distribution function (MDF) of stars in ultra-faint dwarf galaxies could show these signatures of reionization. However, past studies of UFD MDFs have been limited, because there are only a few dozen red giant branch (RGB) stars in such low-mass galaxies. We present low-resolution Magellan/IMACS spectroscopy of 167 stars in the UFD Reticulum II ($M_* \approx 3000 M_\odot$), increasing the number of stellar metallicities by 6.5 times and resulting in the most populated spectroscopic metallicity distribution function of any UFD. This is possible because we determined the first spectroscopic metallicities of main sequence turn-off stars in any UFD. The MDF of Reticulum II is clearly a bimodal distribution, displaying two peaks with about $80\%$ of the stars in the metal-poor peak at $\rm[Fe/H]=-3.0$ and $20\%$ of the stars in the more metal-rich peak at $\rm[Fe/H]=-2.1$. Such a large metallicity gap can be explained by Type Ia supernova enrichment during a long quiescent period. This supports the currently-favored two-burst star formation history for Reticulum II and shows that such low-mass galaxies clearly can form stars after reionization.
format Preprint
id arxiv_https___arxiv_org_abs_2506_16462
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Bimodal Metallicity Distribution Function in the Ultra-Faint Dwarf Galaxy Reticulum II
Luna, Alice M.
Ji, Alexander P.
Chiti, Anirudh
Simon, Joshua D.
Kelson, Daniel D.
Go, Minsung
Limberg, Guilherme
Li, Ting S.
Frebel, Anna
Astrophysics of Galaxies
Solar and Stellar Astrophysics
Star formation in ultra-faint dwarf galaxies (UFDs, $M_* <10^5M_\odot$) is suppressed by reionization, but may not be completely quenched. The metallicity distribution function (MDF) of stars in ultra-faint dwarf galaxies could show these signatures of reionization. However, past studies of UFD MDFs have been limited, because there are only a few dozen red giant branch (RGB) stars in such low-mass galaxies. We present low-resolution Magellan/IMACS spectroscopy of 167 stars in the UFD Reticulum II ($M_* \approx 3000 M_\odot$), increasing the number of stellar metallicities by 6.5 times and resulting in the most populated spectroscopic metallicity distribution function of any UFD. This is possible because we determined the first spectroscopic metallicities of main sequence turn-off stars in any UFD. The MDF of Reticulum II is clearly a bimodal distribution, displaying two peaks with about $80\%$ of the stars in the metal-poor peak at $\rm[Fe/H]=-3.0$ and $20\%$ of the stars in the more metal-rich peak at $\rm[Fe/H]=-2.1$. Such a large metallicity gap can be explained by Type Ia supernova enrichment during a long quiescent period. This supports the currently-favored two-burst star formation history for Reticulum II and shows that such low-mass galaxies clearly can form stars after reionization.
title A Bimodal Metallicity Distribution Function in the Ultra-Faint Dwarf Galaxy Reticulum II
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2506.16462