The nearby star-forming dwarf galaxy Sextans A offers a unique window into galaxy evolution in the early Universe, owing to its extremely low metallicity (similar to 0.01-0.07 Z circle dot). Recent JWST imaging of Sextans A spanning 1-21 mu m enables a detailed characterization of its dusty stellar populations and interstellar medium. In this work, we compare the observed JWST color-magnitude distributions of evolved stars with stellar evolution and dust-formation models to characterize the properties of the asymptotic giant branch (AGB) population, including progenitor mass, formation epoch, metallicity, and dust production. Evolutionary tracks for 0.8-7 M circle dot stars with metallicity Z = 10-3 provide good agreement with the overall distribution of AGB stars in Sextans A. More than 90% of the AGB population occupies a nearly vertical sequence in the color-magnitude diagrams, corresponding to stars spanning a wide range of masses and ages but exhibiting little or no circumstellar dust. This sequence appears to be dominated by oxygen-rich (M-type) AGB stars and reveals that the F444W flux is a robust luminosity diagnostic. A small subset of sources displays strong IR excesses and is dominated by carbon stars descending from 1.25 to 1.5 M circle dot progenitors that formed similar to 2-3 Gyr ago and are currently in the final AGB phases. Their MIRI colors imply very low metallicities, consistent with estimates from the red giant branch morphology (similar to 0.01-0.02 Z circle dot). Finally, we show that the JWST/NIRCam F277W - F444W color serves as an effective proxy for the dust production rate, with models predicting rates up to similar to 10-7 M circle dot yr-1 for the reddest sources in Sextans A.
Gavetti, C., Dell'Agli, F., Tarantino, E., Boyer, M.l., Mcdonald, I., Van Loon, J.t., et al. (2026). Dust in the Very Metal-poor Galaxy Sextans A with JWST. I. Characterizing the Evolved Stellar Population of Sextans A Based on JWST Observations and Stellar Evolution Models. THE ASTROPHYSICAL JOURNAL, 1006(2), 1 [10.3847/1538-4357/ae7bee].
Dust in the Very Metal-poor Galaxy Sextans A with JWST. I. Characterizing the Evolved Stellar Population of Sextans A Based on JWST Observations and Stellar Evolution Models
Gavetti, C
;La Franca, F;
2026-01-01
Abstract
The nearby star-forming dwarf galaxy Sextans A offers a unique window into galaxy evolution in the early Universe, owing to its extremely low metallicity (similar to 0.01-0.07 Z circle dot). Recent JWST imaging of Sextans A spanning 1-21 mu m enables a detailed characterization of its dusty stellar populations and interstellar medium. In this work, we compare the observed JWST color-magnitude distributions of evolved stars with stellar evolution and dust-formation models to characterize the properties of the asymptotic giant branch (AGB) population, including progenitor mass, formation epoch, metallicity, and dust production. Evolutionary tracks for 0.8-7 M circle dot stars with metallicity Z = 10-3 provide good agreement with the overall distribution of AGB stars in Sextans A. More than 90% of the AGB population occupies a nearly vertical sequence in the color-magnitude diagrams, corresponding to stars spanning a wide range of masses and ages but exhibiting little or no circumstellar dust. This sequence appears to be dominated by oxygen-rich (M-type) AGB stars and reveals that the F444W flux is a robust luminosity diagnostic. A small subset of sources displays strong IR excesses and is dominated by carbon stars descending from 1.25 to 1.5 M circle dot progenitors that formed similar to 2-3 Gyr ago and are currently in the final AGB phases. Their MIRI colors imply very low metallicities, consistent with estimates from the red giant branch morphology (similar to 0.01-0.02 Z circle dot). Finally, we show that the JWST/NIRCam F277W - F444W color serves as an effective proxy for the dust production rate, with models predicting rates up to similar to 10-7 M circle dot yr-1 for the reddest sources in Sextans A.| File | Dimensione | Formato | |
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