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首页> 外文期刊>Astronomy and astrophysics >The MUSE Hubble Ultra Deep Field Survey - II. Spectroscopic redshifts and comparisons to color selections of high-redshift galaxies
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The MUSE Hubble Ultra Deep Field Survey - II. Spectroscopic redshifts and comparisons to color selections of high-redshift galaxies

机译:MUSE哈勃超深场勘测-II。光谱红移以及与高红移星系颜色选择的比较

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We have conducted a two-layered spectroscopic survey ( 1′ × 1′ ultra deep and 3′ × 3′ deep regions) in the Hubble Ultra Deep Field (HUDF) with the Multi Unit Spectroscopic Explorer (MUSE). The combination of a large field of view, high sensitivity, and wide wavelength coverage provides an order of magnitude improvement in spectroscopically confirmed redshifts in the HUDF; i.e., 1206 secure spectroscopic redshifts for Hubble Space Telescope (HST) continuum selected objects, which corresponds to 15% of the total ( 7904 ). The redshift distribution extends well beyond z & 3 and to HST/ F775W magnitudes as faint as ≈ 30 mag (AB, 1 σ ). In addition, 132 secure redshifts were obtained for sources with no HST counterparts that were discovered in the MUSE data cubes by a blind search for emission-line features. In total, we present 1338 high quality redshifts, which is a factor of eight increase compared with the previously known spectroscopic redshifts in the same field. We assessed redshifts mainly with the spectral features [O? ii ] at z & 1.5 (473 objects) and Ly α at 2.9 & z & 6.7 (692 objects). With respect to F775W magnitude, a 50% completeness is reached at 26.5 mag for ultra deep and 25.5 mag for deep fields, and the completeness remains ? 20% up to 28–29 mag and ≈ 27 mag, respectively. We used the determined redshifts to test continuum color selection (dropout) diagrams of high- z galaxies. The selection condition for F336W dropouts successfully captures ≈ 80% of the targeted z ~ 2.7 galaxies. However, for higher redshift selections ( F435W , F606W , and F775W dropouts), the success rates decrease to ≈ 20 –40%. We empirically redefine the selection boundaries to make an attempt to improve them to ≈ 60% . The revised boundaries allow bluer colors that capture Ly α emitters with high Ly α equivalent widths falling in the broadbands used for the color-color selection. Along with this paper, we release the redshift and line flux catalog.
机译:我们使用多单元光谱浏览器(MUSE)在哈勃超深场(HUDF)中进行了两层光谱调查(1'×1'超深和3'×3'深区域)。大视野,高灵敏度和宽波长范围的结合使HUDF的光谱确认红移提高了一个数量级。即,针对哈勃太空望远镜(HST)连续选定对象的1206安全光谱红移,对应于总数的15%(7904)。红移分布远远超出了z& 3到HST / F775W的幅度微弱到≈30 mag(AB,1σ)。另外,通过盲目搜索发射线特征,在MUSE数据立方体中没有HST对应物的源获得了132个安全红移。我们总共提供了1338个高质量的红移,与同一领域中以前已知的光谱红移相比,增加了八倍。我们主要通过光谱特征来评估红移[O? ii]在z < 1.5(473个物体)和Lyα为2.9 <2.0。 & 6.7(692个对象)。对于F775W量级,超深磁场为26.5 mag,深磁场磁场为25.5 mag,达到了50%的完整性,而完整性仍保持在?分别为28–29 mag和≈27 mag的20%。我们使用确定的红移来测试高Z星系的连续体颜色选择(缺失)图。 F336W辍学的选择条件成功捕获了约80%的目标z〜2.7星系。但是,对于更高的红移选择(F435W,F606W和F775W辍学),成功率降低到≈20 –40%。我们根据经验重新定义选择边界,以尝试将其提高到≈60%。修改后的边界允许使用较蓝的颜色捕获具有较高Ly等效宽度的Lyα发射器,而Ly等效宽度落在用于颜色选择的宽带中。连同本文一起,我们发布了红移和线通量目录。

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