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首页> 外文期刊>Astronomy and astrophysics >High-resolution CRIRES spectra of Terzan 1: a metal-poor globular cluster toward the inner bulge
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High-resolution CRIRES spectra of Terzan 1: a metal-poor globular cluster toward the inner bulge

机译:Terzan 1的高分辨率CRIRES光谱:向内凸起的贫金属球状星团

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Aims. Containing the oldest stars in the Galaxy, globular clusters toward the bulge can be used to trace its dynamical and chemical evolution. In the bulge direction, there are ~50 clusters, but only about 20% have been subject of high-resolution spectroscopic investigations. So far, the sample observed at high resolution spans a moderate-to-high metallicity regime. In this sample, however, very few are located in the innermost region (RGC ≤ 1.5 Kpc and | l,b | ≤ 5°). To constrain the chemical evolution enrichment of the innermost region of Galaxy, accurate abundances and abundance patterns of key elements based on high-resolution spectroscopy are necessary. Here we present the results we obtained for Terzan?1, a metal-poor cluster located in the innermost bulge region. Methods. Using the near-infrared spectrograph CRIRES at ESO/VLT, we obtained high-resolution (R ≈ 50 000) H-band spectra of 16 bright giant stars in the innermost region (r ≤ 60′′) of Terzan 1. Full spectral synthesis techniques and equivalent width measurements of selected lines, isolated and free of significant blending and/or contamination by telluric lines, allowed accurate chemical abundances and radial velocities to be derived. Results. Fifteen out of 16 observed stars are likely cluster members, with an average heliocentric radial velocity of +57 ± 1.8 km s-1 and mean iron abundance of [ Fe/H ] = ?1.26 ± 0.03 dex. For these stars we measured some [α/Fe] abundance ratios, finding average values of [ O/Fe ] = +0.39 ± 0.02 dex, [ Mg/Fe ] = +0.42 ± 0.02 dex, [ Si/Fe ] = +0.31 ± 0.04 dex, and [ Ti/Fe ] = +0.15 ± 0.04 dex Conclusions. The α enhancement (≈+0.4 dex) found in the observed giant stars of Terzan 1 is consistent with previous measurements on other, more metal-rich bulge clusters, which suggests a rapid chemical enrichment.
机译:目的包含银河系中最古老的恒星,朝向凸起的球状星团可以用来追踪其动力学和化学演化。在凸起方向上,有约50个星团,但是只有约20%的星团是高分辨率光谱学研究的对象。到目前为止,以高分辨率观察到的样品跨越了中度到高度的金属状态。但是,在此样本中,很少位于最内部区域(RGC≤1.5 Kpc和| l,b |≤5°)。为了限制银河最内层区域的化学演化富集,需要基于高分辨率光谱的准确丰度和关键元素的丰度模式。在这里,我们介绍了我们对Terzan?1(位于最内侧凸起区域的金属贫乏团簇)获得的结果。方法。使用ESO / VLT上的近红外光谱仪CRIRES,我们获得了Terzan 1最内层区域(r≤60'')的16个明亮巨星的高分辨率(R≈50 000)H波段光谱。所选管线的技术和等效宽度测量值相互隔离,并且没有明显的掺和和/或碲化物管线污染,因此可以得出准确的化学丰度和径向速度。结果。在观测到的16颗恒星中,有15颗可能是星团成员,平均日心向径向速度为+57±1.8 km s-1,平均铁丰度为[Fe / H] = 1.26±0.03 dex。对于这些恒星,我们测量了一些[α/ Fe]丰度比,得出[O / Fe] = +0.39±0.02 dex,[Mg / Fe] = +0.42±0.02 dex,[Si / Fe] = +0.31的平均值结论:±0.04 dex,[Ti / Fe] = +0.15±0.04 dex。在观察到的Terzan 1巨星中发现的α增强(≈+ 0.4 dex)与先前对其他金属含量更高的凸出星团的测量结果一致,这表明化学物质迅速富集。

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