论文标题

寄主星系质量与局部恒星年龄相结合,改善了IA型超新星距离

Host Galaxy Mass Combined with Local Stellar Age Improve Type Ia Supernovae Distances

论文作者

Rose, B. M., Rubin, D., Strolger, L., Garnavich, P. M.

论文摘要

IA型超新星(SNE IA)是可标准化的蜡烛,但是十多年来,关于如何正确说明其与宿主星系特性的相关性的争论。使用贝叶斯分层模型统一,我们同时适合SN IA光曲线,并在一组103个Sloan Digital Sky Survey II SNE IA上进行SN IA光曲线和宿主星系标准化参数。我们研究了宿主恒星质量的影响,以及局部化($ r <3 $ kpc)和主机集成的平均恒星年龄,源自恒星种群合成建模。我们发现,光曲线形状的标准化($α$)与需要同时拟合的宿主星系标准化项($γ_i$)相关。此外,我们发现这些相关性本身取决于主机星系恒星质量,其中包括颜色项($β$)为$ 0.8 \ mathrm {magrm {mag} $的变化,由于小样本而言,仅为$1.2σ$。我们在$3.7σ$级别上找到一个线性宿主质量标准化项,本身并不能显着提高单个SN IA距离的精度。但是,发现使用恒星质量和平均局部恒星年龄的标准化在二维后部空间中的标准化在$>3σ$中很重要。此外,标准化后的Sne IA绝对幅度的无法解释的散布从$ 0.122^{+0.019} _ { - 0.018} $降低到$ 0.109 \ pm0.017 $ mag,或$ \ \ sim10 \%$。使用全球年龄时,我们没有看到类似的改进。这种组合与影响SNE IA的光度的金属性或视线灰尘一致。

Type Ia supernovae (SNe Ia) are standardizable candles, but for over a decade, there has been a debate on how to properly account for their correlations with host galaxy properties. Using the Bayesian hierarchical model UNITY, we simultaneously fit for the SN Ia light curve and host galaxy standardization parameters on a set of 103 Sloan Digital Sky Survey II SNe Ia. We investigate the influences of host stellar mass, along with both localized ($r<3$ kpc) and host-integrated average stellar ages, derived from stellar population synthesis modeling. We find that the standardization for the light-curve shape ($α$) is correlated with host galaxy standardization terms ($γ_i$) requiring simultaneous fitting. In addition, we find that these correlations themselves are dependent on host galaxy stellar mass that includes a shift in the color term ($β$) of $0.8 \mathrm{mag}$, only significant at $1.2σ$ due to the small sample. We find a linear host mass standardization term at the $3.7σ$ level, that by itself does not significantly improve the precision of an individual SN Ia distance. However, a standardization that uses both stellar mass and average local stellar age is found to be significant at $>3σ$ in the two-dimensional posterior space. In addition, the unexplained scatter of SNe Ia absolute magnitude post standardization, is reduced from $0.122^{+0.019}_{-0.018}$ to $0.109\pm0.017$ mag, or $\sim10\%$. We do not see similar improvements when using global ages. This combination is consistent with either metallicity or line-of-sight dust affecting the observed luminosity of SNe Ia.

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