原始矮星系调查

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Nicolas Longeard, Pascale Jablonka, Giuseppina Battaglia, Khyati Malhan, Nicolas F. Martin, Julio F. Navarro, Federico Sestito
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引用次数: 0

摘要

目标。银河系有大量的矮星系卫星。它们的性质对宇宙学和星系形成背后的物理过程都很敏感,但这些性质仍然没有对整个卫星种群进行适当的表征。我们的目标是提供矮星系Boötes II (Boo II)最精确的系统动力学和金属丰度特性。我们利用安装在甚大望远镜(VLT)上的光纤大阵列多元素光谱仪(FLAMES)的数据,对Boo II(日心距离约66 kpc)场的39颗恒星进行了新的光谱采样。目标的选择是基于宽带光度测量、盖亚的适当运动和原始巡天的金属丰度敏感的窄带光度测量的结合,这是去除明显的银河系污染物的理想选择。我们发现了9个新成员,包括最近文献中发现的5个成员,以及迄今为止最远的成员(距Boo II质心5.7半光半径),扩大了该系统的光谱空间覆盖范围。我们基于钙三重态线的金属丰度测量导致探测到两颗最初的极贫金属恒星([Fe/H]−1),系统速度(km s−1),并且显示它没有显示任何显著速度梯度的迹象(d⟨v⟩/d km s−1 arcmin−1,或−0.5/1.9 km s−1 arcmin−1作为3σ上限)。因此,我们能够确认卫星的运动学和金属丰度特性,并确定未来高分辨率分析的新成员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Pristine Dwarf-Galaxy survey
Aims. The Milky Way has a large population of dwarf galaxy satellites. Their properties are sensitive to both cosmology and the physical processes underlying galaxy formation, but these properties are still not properly characterised for the entire satellite population.Methods. We aim to provide the most accurate systemic dynamical and metallicity properties of the dwarf galaxy Boötes II (Boo II).Results. We use a new spectroscopic sample of 39 stars in the field of Boo II (heliocentric distance of ∼66 kpc) with data from the Fiber Large Array Multi Element Spectrograph (FLAMES) mounted on the Very Large Telescope (VLT). The target selection is based on a combination of broadband photometry, proper motions from Gaia, and the metallicity-sensitive narrow-band photometry from the Pristine survey that is ideal for removing obvious Milky Way contaminants.Conclusions. We found nine new members, including five also found by recent works in the literature, and the farthest member to date (5.7 half-light radii from Boo II centroid), extending the spectroscopic spatial coverage of this system. Our metallicity measurements based on the Calcium triplet lines leads to the detection of the two first Extremely Metal-poor stars ([Fe/H] < −3.0) in Boo II. Combining this new dataset with literature data refines Boo II’s velocity dispersion ( km s−1), systemic velocity ( km s−1), and shows that it does not show any sign of a significant velocity gradient (d⟨v⟩/d km s−1 arcmin−1, or −0.5/1.9 km s−1 arcmin−1 as 3σ upper limits). We are thus able to confirm the kinematic and metallicity properties of the satellite as well as identify new members for future high-resolution analyses.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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