论文标题
关于颜色:深色能源调查中环境对IA型超新星颜色的影响
Concerning Colour: The Effect of Environment on Type Ia Supernova Colour in the Dark Energy Survey
论文作者
论文摘要
最近的分析发现,IA型超新星(SNE IA)的颜色($ c $)与它们的“质量步长”的大小,SN IA主机Galaxy Stellar seltar质量($ M_ \ Mathrm {stellar} $)与Sn ia sn ia sn ia sn ia sn ia sni ia hubble残留物之间的关系之间存在着有趣的相关性。使用黑暗能源调查的5年样本中的675个光学分类的SNE IA,我们研究了各种全球宿主星系和局部环境特性的Hubble残留差异,用于SN IA子样本,以其颜色分裂。当比较蓝色($ c <0 $)和红色($ c> 0 $)SNE时,我们发现质量步骤的$3σ$差异。我们观察到最低的R.M.S.在低质量/蓝色环境中,蓝色SNE的哈勃残留物中的散射($ \ sim0.14 $ mag),这表明这是用于宇宙学分析的最均匀样本。通过适合哈勃残差与$ m_ \ mathrm {stellar} $之间的$ c $依赖关系,近似于现有的灰尘模型,我们从数据中删除了质量步骤,并找到暂定$ \ sim2σ$ restual Steass in REST-FRAME FILMARE GALAXY GALAXY $ U-R-R $ color。这表明基于$ M_ \ Mathrm {stellar} $的灰尘建模可能无法完全解释Sn Ia LuminiSution的剩余分散体。 Instead, accounting for a $c$-dependent relationship between Hubble residuals and global $U-R$, results in $\leq1σ$ residual steps in $M_\mathrm{stellar}$ and local $U-R$, suggesting that $U-R$ provides different information about the environment of SNe Ia compared to $M_\mathrm{stellar}$, and motivating the inclusion of galaxy $U-R$ colour in SN IA距离偏置校正。
Recent analyses have found intriguing correlations between the colour ($c$) of type Ia supernovae (SNe Ia) and the size of their 'mass-step', the relationship between SN Ia host galaxy stellar mass ($M_\mathrm{stellar}$) and SN Ia Hubble residual, and suggest that the cause of this relationship is dust. Using 675 photometrically-classified SNe Ia from the Dark Energy Survey 5-year sample, we study the differences in Hubble residual for a variety of global host galaxy and local environmental properties for SN Ia subsamples split by their colour. We find a $3σ$ difference in the mass-step when comparing blue ($c<0$) and red ($c>0$) SNe. We observe the lowest r.m.s. scatter ($\sim0.14$ mag) in the Hubble residual for blue SNe in low mass/blue environments, suggesting that this is the most homogeneous sample for cosmological analyses. By fitting for $c$-dependent relationships between Hubble residuals and $M_\mathrm{stellar}$, approximating existing dust models, we remove the mass-step from the data and find tentative $\sim 2σ$ residual steps in rest-frame galaxy $U-R$ colour. This indicates that dust modelling based on $M_\mathrm{stellar}$ may not fully explain the remaining dispersion in SN Ia luminosity. Instead, accounting for a $c$-dependent relationship between Hubble residuals and global $U-R$, results in $\leq1σ$ residual steps in $M_\mathrm{stellar}$ and local $U-R$, suggesting that $U-R$ provides different information about the environment of SNe Ia compared to $M_\mathrm{stellar}$, and motivating the inclusion of galaxy $U-R$ colour in SN Ia distance bias correction.