论文标题

倾斜度衰减对紫外星形成率示踪剂的影响

The Impact of Inclination-dependent Attenuation on Ultraviolet Star Formation Rate Tracers

论文作者

Doore, Keith, Eufrasio, Rafael T., Lehmer, Bret D., Monson, Erik B., Basu-Zych, Antara, Garofali, Kristen

论文摘要

我们检查并量化混合(例如UV+IR)星形形成速率(SFR)估计器以及$ a _ {\ rm fuv} $ - $β$关系取决于使用光谱能量分布模型的倾斜度倾向,该光谱分布模型利用了倾斜度依赖于倾斜的呈现的当作阶层曲线。我们对来自烛台的133个磁盘为主导星系的样本和来自Spitzer红外线附近星系调查的18个磁盘星系的样本进行了分析,以及对附近星系的关键见解:与Herschel样品进行的远红外调查。我们发现混合SFR估计器和$ a _ {\ rm fuv} $ - $β$关系的倾向依赖性很明显。为了量化混合SFR估计器中的这种依赖性,我们得出了倾斜度和远处和近红外颜色依赖性参数关系,用于将观察到的UV和IR亮度转换为SFRS。对于$ a _ {\ rm fuv} $ - $β$的关系,我们引入了一个倾向依赖的组件,该组件是倾向依赖的大部分依赖性,而关系的分散会随着倾向的增加而增加。然后,我们将这两种依赖性关系与文献中的类似倾向与独立的关系进行了比较。从此比较中,我们发现我们的混合动力和$ a _ {\ rm fuv} $和$ a _ {\ rm fuv} $和$ a _ {\ rm fuv} $ - $β$关系,导致样本的残留散布减少了2个因子2。 fuv} $ - $β$关系,以在磁盘为主的星系中产生更准确的SFR估计。

We examine and quantify how hybrid (e.g., UV+IR) star formation rate (SFR) estimators and the $A_{\rm FUV}$-$β$ relation depend on inclination for disk-dominated galaxies using spectral energy distribution modeling that utilizes the inclination-dependent attenuation curves described in Doore et al. We perform this analysis on a sample of 133 disk-dominated galaxies from the CANDELS fields and 18 disk galaxies from the Spitzer Infrared Nearby Galaxies Survey and Key Insights on Nearby Galaxies: A Far-Infrared Survey with Herschel samples. We find that both the hybrid SFR estimators and the $A_{\rm FUV}$-$β$ relation present clear dependencies on inclination. To quantify this dependence in the hybrid SFR estimators, we derive an inclination and a far-UV and near-IR color-dependent parametric relation for converting observed UV and IR luminosities into SFRs. For the $A_{\rm FUV}$-$β$ relation, we introduce an inclination-dependent component that accounts for the majority of the inclination dependence with the scatter of the relation increasing with inclination. We then compare both of these inclination-dependent relations to similar inclination-independent relations found in the literature. From this comparison, we find that the UV+IR correction factor and $A_{\rm FUV}$ for our hybrid and $A_{\rm FUV}$-$β$ relations, respectively, result in a reduction in the residual scatter of our sample by approximately a factor of 2. Therefore, we demonstrate that inclination must be considered in hybrid SFR estimators and the $A_{\rm FUV}$-$β$ relation to produce more accurate SFR estimates in disk-dominated galaxies.

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