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HST/ACS DIRECT AGES OF THE DWARF ELLIPTICAL GALAXIES NGC 147 AND NGC 185

机译:矮星椭圆星系NGC 147和NGC 185的HST / ACS直接年龄

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We present the deepest optical photometry for any dwarf elliptical (dE) galaxy based on Hubble Space Telescope Advanced Camera for Surveys (ACS) observations of the Local Group dE galaxies NGC 147 and NGC 185. Our F606W and F814W color–magnitude diagrams are the first to reach below the oldest main sequence turnoff in a dE galaxy, allowing us to determine full star formation histories in these systems. The ACS fields are located roughly ~1.5 effective radii from the galaxy center to avoid photometric crowding. While both ACS fields show unambiguous evidence for old and intermediate age stars, the mean age of NGC 147 is ~4–5 Gyr younger as compared to NGC 185. In NGC 147, only 40% of stars were in place 12.5 Gyr ago (z ~ 5), with the bulk of the remaining stellar population forming between 5 to 7 Gyr. In contrast, 70% of stars were formed in NGC 185 prior to 12.5 Gyr ago with the majority of the remaining population forming between 8 to 10 Gyr ago. Star formation has ceased in both ACS fields for at least 3 Gyr. Previous observations in the central regions of NGC 185 show evidence for star formation as recent as 100 Myr ago, and a strong metallicity gradient with radius. This implies a lack of radial mixing between the center of NGC 185 and our ACS field. The lack of radial gradients in NGC 147 suggests that our inferred SFHs are more representative of its global history. We interpret the inferred differences in star formation histories to imply an earlier infall time into the M31 environment for NGC 185 as compared to NGC 147.
机译:我们基于哈勃太空望远镜高级观测相机(ACS)对本地dE星系NGC 147和NGC 185的观测,提出了任何矮椭圆形(dE)星系的最深光学测光法。我们的F606W和F814W色度图是第一个到达dE星系中最古老的主序列截止点以下,使我们能够确定这些系统中完整的恒星形成历史。 ACS场距离星系中心约1.5有效半径,以避免光度学拥挤。尽管两个ACS场均显示了中老年恒星的明确证据,但NGC 147的平均年龄比NGC 185小约4-5 Gyr。在NGC 147中,只有40%的恒星位于12.5 Gyr之前(z 〜5),剩下的大部分恒星种群在5至7 Gyr之间形成。相比之下,NGC 185中的70%的恒星是在12.5 Gyr之前形成的,而其余大多数种群则是在8-10 Gyr之前形成的。在两个ACS场中至少3 Gyr都已停止恒星形成。 NGC 185中部地区的先前观测结果表明,最近100 Myr之前已形成恒星,并且具有半径较大的强金属性梯度。这意味着NGC 185的中心与我们的ACS场之间缺乏径向混合。 NGC 147中缺少径向梯度表明我们推断的SFH更能代表其全球历史。我们解释推断出的恒星形成历史差异,意味着与NGC 147相比,NGC 185进入M31环境的时间更早。

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