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Probing Cool and Warm Infrared Galaxies Using Photometric and Structural Measures

机译:使用光度学和结构测度探测冷热红外星系

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摘要

We have analyzed a sample of nearby cool and warm infrared (IR) galaxies using photometric and structural parameters. The set of measures include far-infrared color [C = log(S_(60 μm)/S_(100 μm))], total IR luminosity (L_TIR), radio surface brightness, and radio, near-infrared, and optical sizes. In a given luminosity range cool and warm galaxies are considered as those sources that are found approximately 1 σ below and above the mean color in the far-infrared C-L_TIR diagram. We find that galaxy radio surface brightness is well correlated with color whereas size is less well correlated with color. Our analysis indicates that IR galaxies that are dominated by cool dust are large, massive spirals that are not strongly interacting or merging and presumably the ones with the least active star formation. Dust in these cool objects is less centrally concentrated than in the more typical luminous and ultraluminous IR galaxies that are dominated by warm dust. Our study also shows that low-luminosity early-type unbarred and transitional spirals are responsible for the large scatter in the C-LTIR diagram. Among highly luminous galaxies, late-type unbarred spirals are predominately warm, and early-type unbarred and barred spirals are systematically cooler. We highlight the significance of the C-L_TIR diagram in terms of local and high-redshift submillimeter galaxies.
机译:我们使用光度学和结构参数分析了附近的冷和暖红外(IR)星系的样本。这套措施包括:远红外颜色[C = log(S_(60μm)/ S_(100μm))],总IR光度(L_TIR),无线电表面亮度以及无线电,近红外和光学尺寸。在给定的亮度范围内,冷和暖星系被认为是在远红外C-L_TIR图表中比平均颜色低大约1σ的源。我们发现,星系无线电表面的亮度与颜色有很好的相关性,而大小与颜色的相关性却不太好。我们的分析表明,由冷尘占据主导地位的红外星系是巨大的,巨大的螺旋形,它们之间没有强烈的相互作用或合并,大概是那些活动最不活跃的恒星。这些较冷的物体中的尘埃比集中在较热的尘埃和更典型的发光和超发光红外星系中的集中度要低。我们的研究还表明,低发光度的早期无限制螺旋和过渡螺旋是C-LTIR图中较大散射的原因。在高度发光的星系中,较晚类型的无旋涡旋主要是温暖的,而较早类型的无旋涡旋和禁止的旋涡通常较冷。我们以局部和高红移亚毫米星系突出C-L_TIR图的重要性。

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