首页> 外文期刊>The Astrophysical journal >AN INFRARED CENSUS OF DUST IN NEARBY GALAXIES WITH SPITZER (DUSTiNGS). II. DISCOVERY OF METAL-POOR DUSTY AGB STARS
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AN INFRARED CENSUS OF DUST IN NEARBY GALAXIES WITH SPITZER (DUSTiNGS). II. DISCOVERY OF METAL-POOR DUSTY AGB STARS

机译:斯皮泽(DUSTiNGS)附近星系的红外尘埃普查。二。贫金属尘埃GB星星的发现

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The DUSTiNGS survey (DUST in Nearby Galaxies with Spitzer) is a 3.6 and 4.5 μm imaging survey of 50 nearby dwarf galaxies designed to identify dust-producing asymptotic giant branch (AGB) stars and massive stars. Using two epochs, spaced approximately six months apart, we identify a total of 526 dusty variable AGB stars (sometimes called "extreme" or x-AGB stars; [3.6]-[4.5] 0.1 mag). Of these, 111 are in galaxies with [Fe/H] –1.5 and 12 are in galaxies with [Fe/H] –2.0, making them the most metal-poor dust-producing AGB stars known. We compare these identifications to those in the literature and find that most are newly discovered large-amplitude variables, with the exception of ≈30 stars in NGC 185 and NGC 147, 1 star in IC 1613, and 1 star in Phoenix. The chemical abundances of the x-AGB variables are unknown, but the low metallicities suggest that they are more likely to be carbon-rich than oxygen-rich and comparisons with existing optical and near-IR photometry confirm that 70 of the x-AGB variables are confirmed or likely carbon stars. We see an increase in the pulsation amplitude with increased dust production, supporting previous studies suggesting that dust production and pulsation are linked. We find no strong evidence linking dust production with metallicity, indicating that dust can form in very metal-poor environments.
机译:DUSTiNGS调查(使用Spitzer进行附近星系中的DUST)是对50个附近的矮星系进行的3.6和4.5μm成像调查,旨在识别产生尘埃的渐近巨型分支(AGB)恒星和大质量恒星。使用两个相距大约六个月的时期,我们识别出总共526个尘土飞扬的AGB恒星(有时称为“极端”或x-AGB恒星; [3.6]-[4.5]> 0.1 mag)。其中,[Fe / H] <–1.5的星系中有111个,[Fe / H] <–2.0的星系中有12个,使它们成为已知的金属贫化程度最高的AGB星。我们将这些标识与文献中的标识进行比较,发现大多数是新发现的大振幅变量,除了NGC 185和NGC 147中≈30星,IC 1613中1星和凤凰城1星。 x-AGB变量的化学丰度未知,但低金属含量表明它们比富氧的碳更富碳,与现有光学和近红外光度法的比较证实了70个x-AGB变量被确认或可能是碳星。我们看到,随着粉尘产生的增加,脉动幅度也会增加,这支持先前的研究表明粉尘产生和脉动是相关的。我们没有找到将粉尘产生与金属性联系起来的有力证据,表明粉尘可能在金属贫乏的环境中形成。
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