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Ultradeep Near-Infrared ISAAC Observations of the Hubble Deep Field South: Observations, Reduction, Multicolor Catalog, and Photometric Redshifts*

机译:UltraDeep近红外ISAAC观测哈勃深场南:观察,减少,多色目录和光度红移*

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We present deep near-infrared (NIR) Js-, H-, and Ks-band ISAAC imaging of the Wide Field Planetary Camera 2 (WFPC2) field of the Hubble Deep Field South (HDF-S). The 25 × 25 high Galactic latitude field was observed with the Very Large Telescope under the best seeing conditions, with integration times amounting to 33.6 hr in Js, 32.3 hr in H, and 35.6 hr in Ks. We reach total AB magnitudes for point sources of 26.8, 26.2, and 26.2, respectively (3 σ), which make it the deepest ground-based NIR observation to date and the deepest Ks-band data in any field. The effective seeing of the co-added images is ≈045 in Js, ≈048 in H, and ≈046 in Ks. Using published WFPC2 optical data, we constructed a Ks-limited multicolor catalog containing 833 sources down to K 26, of which 624 have seven-band optical-to-NIR photometry. These data allow us to select normal galaxies from their rest-frame optical properties to high redshift (z 4). The observations, data reduction, and properties of the final images are discussed, and we address the detection and photometry procedures that were used in making the catalog. In addition, we present deep number counts, color distributions, and photometric redshifts of the HDF-S galaxies. We find that our faint Ks-band number counts are flatter than published counts in other deep fields, which might reflect cosmic variations or different analysis techniques. Compared to the HDF-N, we find many galaxies with very red V-H colors at photometric redshifts 1.95 zphot 3.5. These galaxies are bright in Ks, with infrared colors redder than Js-Ks 2.3 (in Johnson magnitudes). Because they are extremely faint in the observed optical, they would be missed by ultraviolet–optical selection techniques, such as the U-dropout method.
机译:我们呈现近端行星摄像机2(WFPC2)南部(HDF-S)的近红外线(NIR),H-和KS-BAND ISAAC成像。在最佳的望远镜下,在最佳的望远镜下观察到25×25个高银河系纬度场,其在js,32.3小时内为33.6小时,35.6小时。我们分别达到26.8,26.2和26.2的点来源的总AB幅度(3σ),这使其成为最佳地面的NIR观察和任何字段中最深的KS波段数据。有效地看到共加入的图像在JS,≈048中的≈045,≈046中的ks。使用已发布的WFPC2光学数据,我们构造了包含833个源的KS限制多色目录,下至K 26,其中624具有七带光学对NIR光度测光。这些数据允许我们从其REST帧光学属性中选择正常的星系,以高频率(Z 4)。讨论了最终图像的观察,数据减少和属性,我们解决了用于制作目录的检测和光度法。此外,我们呈现了HDF-S星系的深数计数,颜色分布和光度红移。我们发现我们的微弱ks-band number counts比其他深场的已发布计数更平坦,这可能反映了宇宙变异或不同的分析技术。与HDF-N相比,我们在光度红移1.95 2.3(在约翰逊大小)中。因为它们在观察到的光学中非常微弱,所以它们将被紫外线 - 光学选择技术遗漏,例如U型丢弃方法。

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