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首页> 外文期刊>The Astrophysical journal >Wide Field Planetary Camera 2 Observations of Leo A: A Predominantly Young Galaxy within the Local Group*
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Wide Field Planetary Camera 2 Observations of Leo A: A Predominantly Young Galaxy within the Local Group*

机译:广角行星相机2狮子座A的观测:本地群中主要是年轻的银河系*

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The unprecedented detail of the Wide Field Planetary Camera 2 (WFPC2) color-magnitude diagrams (CMDs) of the resolved stellar population of Leo A presented here allows us to determine a new distance and an accurate star formation history for this extremely metal-poor Local Group dwarf irregular galaxy. From the position of the red clump, the helium-burning blue loops, and the tip of the red giant branch, we obtain a distance modulus, m - M = 24.2 ± 0.2, or 690 ± 60 kpc, which places Leo A firmly within the Local Group. Our interpretation of these features in the WFPC2 CMDs at this new distance based upon extremely low-metallicity (Z = 0.0004) theoretical stellar evolution models suggests that this galaxy is predominantly young, i.e., less than 2 Gyr old. A major episode of star formation 900–1500 Gyr ago can explain the red clump luminosity and also fits in with our interpretation of the number of anomalous Cepheid variable stars seen in this galaxy. We cannot rule out the presence of an older, underlying globular cluster age stellar population with these data. However, using the currently available stellar evolution models, it would appear that such an older population is limited to no more than 10% of the total star formation to have occurred in this galaxy. Leo A provides a nearby laboratory for studying young metal-poor stars and investigations of metal-poor galaxy evolution, such as is supposed to occur for larger systems at intermediate and high redshifts.
机译:此处展示的已解决的狮子座A的恒星群体的广角行星相机2(WFPC2)色度图(CMD)的前所未有的细节,使我们能够为这种金属贫乏的本地人确定新的距离和准确的恒星形成历史群矮星系不规则。从红色团块,燃烧氦的蓝色环和红色巨型分支的尖端的位置,我们获得距离模数m-M = 24.2±0.2或690±60 kpc,这将Leo A牢固地置于本地组。我们基于极低的金属性(Z = 0.0004)理论恒星演化模型对WFPC2 CMD中这些特征的解释,表明该星系主要是年轻的,即小于2 Gyr。 900-1500 Gyr之前恒星形成的主要事件可以解释红色团块的光度,也符合我们对在该星系中看到的异常造父变星数量的解释。根据这些数据,我们不能排除年龄较大的潜在球状星团年龄的恒星种群的存在。但是,使用当前可用的恒星演化模型,看来这种年龄较大的种群被限制为不超过该星系中总恒星形成量的10%。狮子座A提供了一个附近的实验室,用于研究金属贫乏的年轻恒星和研究金属贫乏的星系演化,例如应该在较大和中等红移的大型系统中进行。

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