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首页> 外文期刊>The Astrophysical journal >A DETAILED STUDY OF PHOTOMETRIC REDSHIFTS FOR GOODS-SOUTH GALAXIES
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A DETAILED STUDY OF PHOTOMETRIC REDSHIFTS FOR GOODS-SOUTH GALAXIES

机译:货南星系光度折算的详细研究

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We use the deepest and the most comprehensive photometric data currently available for GOODS-South (GOODS-S) galaxies to measure their photometric redshifts. The photometry includes VLT/VIMOS (U band), HST/ACS (F435W, F606W, F775W, and F850LP bands), VLT/ISAAC (J, H, and Ks bands), and four Spitzer/IRAC channels (3.6, 4.5, 5.8, and 8.0 μm). The catalog is selected in the z band (F850LP) and photometry in each band is carried out using the recently completed TFIT algorithm, which performs point-spread function (PSF) matched photometry uniformly across different instruments and filters, despite large variations in PSFs and pixel scales. Photometric redshifts are derived using the GOODZ code, which is based on the template fitting method using priors. The code also implements "training" of the template spectral energy distribution (SED) set, using available spectroscopic redshifts in order to minimize systematic differences between the templates and the SEDs of the observed galaxies. Our final catalog covers an area of 153 arcmin2 and includes photometric redshifts for a total of 32,505 objects. The scatter between our estimated photometric and spectroscopic redshifts is σ = 0.040 with 3.7% outliers to the full z-band depth of our catalog, decreasing to σ = 0.039 and 2.1% outliers at a magnitude limit mz 24.5. This is consistent with the best results previously published for GOODS-S galaxies, however, the present catalog is the deepest yet available and provides photometric redshifts for significantly more objects to deeper flux limits and higher redshifts than earlier works. Furthermore, we show that the photometric redshifts estimated here for galaxies selected as dropouts are consistent with those expected based on the Lyman break technique.
机译:我们使用当前可用于GOODS-South(GOODS-S)星系的最深,最全面的光度数据来测量其光度红移。测光法包括VLT / VIMOS(U波段),HST / ACS(F435W,F606W,F775W和F850LP波段),VLT / ISAAC(J,H和Ks波段)和四个Spitzer / IRAC通道(3.6、4.5, 5.8和8.0μm)。在z波段(F850LP)中选择目录,并使用最近完成的TFIT算法在每个波段中进行测光,尽管PSF和像素比例。光度红移使用GOODZ代码得出,该代码基于先验的模板拟合方法。该代码还使用可用的光谱红移对模板光谱能量分布(SED)集进行“训练”,以最大程度地减小模板和观测星系的SED之间的系统差异。我们的最终目录涵盖了153 arcmin2的区域,其中包括用于总计32,505个对象的光度红移。我们估计的光度学和光谱学红移之间的分散为σ= 0.040,离我们目录的整个z波段深度的离群值是3.7%,在幅度限制mz <24.5时降低到σ= 0.039和离群值是2.1%。这与先前针对GOODS-S星系发布的最佳结果是一致的,但是,本目录是迄今为止最深的星系,并且提供了光度学红移功能,与以前的工作相比,它对更多的物体提供了更高的通量极限和更高的红移。此外,我们表明,此处估算的被选为辍学星系的光度红移与基于莱曼断裂技术的预期相符。
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