论文标题
艾萨克·牛顿望远镜监测矮星系的调查。 I.仙女座I的调查概述和第一个结果
The Isaac Newton Telescope monitoring survey of Local Group dwarf galaxies. I. Survey overview and first results for Andromeda I
论文作者
论文摘要
2.5-m Isaac Newton望远镜(INT)进行了附近矮星系中的光学监测调查。使用宽场摄像头(WFC)观察到55个矮星系和四个局部组(LG)中的四个孤立的球状簇。这项调查的主要目的是确定最进化的渐近巨型分支(AGB)的恒星和红色超级巨星,其进化的终点是基于它们的脉动不稳定性,利用它们的分布而在亮度上分布来重建星星形成历史记录,量化尘埃生产和质量损失,从而使多波长的能量分布量和相关性和散发量和变化,并相互关联。在一系列论文的第一篇论文中,我们介绍了可变性调查的方法,并描述了仙女座I(和I)矮星系的光度表目录,作为调查的一个示例,并讨论了已确定的长期变量(LPV)恒星。我们检测到5581颗恒星,并在I和I中心的两个半光线内确定了59个LPV候选。 75%的检测到的来源和98%的LPV候选物在中红外波长下被检测到。我们展示了该银河系中存在粉尘的AGB恒星的证据,其中包括五个极端AGB(X-AGB)恒星,并建模其一些光谱能量分布。根据红色巨型分支(RGB)的尖端确定了24.41 mag的距离模量。同样,计算了3.2 Arcmin的半光半径。
An optical monitoring survey in the nearby dwarf galaxies was carried out with the 2.5-m Isaac Newton Telescope (INT). 55 dwarf galaxies and four isolated globular clusters in the Local Group (LG) were observed with the Wide Field Camera (WFC). The main aims of this survey are to identify the most evolved asymptotic giant branch (AGB) stars and red supergiants at the end-point of their evolution based on their pulsational instability, use their distribution over luminosity to reconstruct the star formation history, quantify the dust production and mass loss from modelling the multi-wavelength spectral energy distributions, and relate this to luminosity and radius variations. In this first of a series of papers, we present the methodology of the variability survey and describe the photometric catalogue of Andromeda I (And I) dwarf galaxy as an example of the survey, and discuss the identified long period variable (LPV) stars. We detected 5581 stars and identified 59 LPV candidates within two half-light radii of the centre of And I. The amplitudes of these candidates range from 0.2 to 3 mag in the $i$-band. 75 % of detected sources and 98 % of LPV candidates are detected at mid-infrared wavelengths. We show evidence for the presence of dust-producing AGB stars in this galaxy including five extreme AGB (x-AGB) stars, and model some of their spectral energy distributions. A distance modulus of 24.41 mag for And I was determined based on the tip of the red giant branch (RGB). Also, a half-light radius of 3.2 arcmin is calculated.