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Properties of star forming galaxies in AKARI Deep Field-South

机译:AKARI深场南的恒星形成星系的性质

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Aims. The main aim of this work is the characterization of physical properties of galaxies detected in the far-infrared (FIR) in the AKARI Deep Field-South (ADF-S) survey. Methods. Starting from a catalog of the 1000 brightest ADF-S sources in the WIDE-S (90 μm) AKARI band, we constructed a subsample of galaxies with spectral coverage from the ultraviolet to the FIR. We then analyzed the multiwavelength properties of this 90 μm selected sample of galaxies. For galaxies without known spectroscopic redshifts we computed photometric redshifts using the codes Photometric Analysis for Redshift Estimate (Le PHARE) and Code Investigating GALaxy Emission (CIGALE), tested these photometric redshifts using spectroscopic redshifts, and compared the performances of both codes. To test the reliability of parameters obtained by fitting spectral energy distributions, a mock catalogue was generated. Results. We built a large multiwavelength catalog of more than 500 ADF-S galaxies. We successfully fitted spectral energy distributions of 186 galaxies with , and analyzed the output parameters of the fits. We conclude that our sample consists mostly of nearby actively star-forming galaxies, and all our galaxies have a relatively high metallicity. We estimated photometric redshifts for 113 galaxies from the whole ADF-S sample. Comparing the performance of Le PHARE and CIGALE, we found that CIGALE gives more reliable redshift estimates for our galaxies, which implies that including the IR photometry allows for substantial improvement of photometric redshift estimation.
机译:目的这项工作的主要目的是表征在AKARI深南南(ADF-S)调查中在远红外(FIR)中检测到的星系的物理特性。方法。从WIDE-S(90μm)AKARI波段中1000个最亮的ADF-S光源的目录开始,我们构建了一个从紫外到FIR光谱覆盖的星系子样本。然后,我们分析了这个90μm选定星系样本的多波长特性。对于没有已知光谱红移的星系,我们使用代码红移估计光度分析(Le PHARE)和研究星系发射的代码(CIGALE)计算了光度红移,使用光谱红移测试了这些光度红移,并比较了两种代码的性能。为了测试通过拟合光谱能量分布获得的参数的可靠性,生成了模拟目录。结果。我们建立了一个包含500多个ADF-S星系的大型多波长目录。我们成功地用拟合了186个星系的光谱能量分布,并分析了拟合的输出参数。我们得出的结论是,我们的样本主要由附近活跃的恒星形成星系组成,并且我们所有的星系都具有相对较高的金属度。我们估算了整个ADF-S样本中113个星系的光度红移。通过比较Le PHARE和CIGALE的性能,我们发现CIGALE为我们的星系提供了更可靠的红移估计,这意味着包括IR光度法可以大大改善光度红移估计。

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