论文标题

请参阅更改:高红移类型IA超新星宿主星系样品的VLT光谱

See Change: VLT spectroscopy of a sample of high-redshift Type Ia supernova host galaxies

论文作者

Williams, S. C., Hook, I. M., Hayden, B., Nordin, J., Aldering, G., Boone, K., Goobar, A., Lidman, C. E., Perlmutter, S., Rubin, D., Ruiz-Lapuente, P., Saunders, C.

论文摘要

Supernova Cosmology项目已进行了“ See Change”计划,旨在发现和观察高红移(1.13 $ \ LEQ $ Z $ Z $ \ leq $ 1.75)IA类型IA Supernovae(Sne IA)。我们使用了具有足够的节奏的大型星系簇的多滤器哈勃太空望远镜(HST)观察结果,使观察到的SN IA光曲线适用于Z> 0.5处的深色能量探针。这参见具有多色光曲线的SNE IA的更改样本将是迄今为止最大的红移。作为SEE变更程序的一部分,我们获得了每个发现的瞬态和/或其宿主星系的地面光谱。在这里,我们提出了非常大的望远镜(VLT)光谱,请参见变化瞬态宿主星系,得出红移以及宿主参数,例如恒星质量和恒星形成速率。在39个参见VLT观察到的变化瞬变/宿主中,我们成功地确定了26个红移,其中包括z> 0.97的15 sne ia。我们表明,即使在被动环境中,也可以为大多数SN主机恢复安全的红移至Z = 1.5。我们发现,在8m级望远镜上典型的暴露时间为3-4小时,我们可以在0.97 <z <z <1.5的范围内恢复约75%的SN IA红移。此外,我们表明HST光度法和VLT光谱法的组合能够提供宿主星系恒星质量的估计值,这些质量足以在宇宙分析中用于质量步骤校正。

The Supernova Cosmology Project has conducted the `See Change' programme, aimed at discovering and observing high-redshift (1.13 $\leq$ z $\leq$ 1.75) Type Ia supernovae (SNe Ia). We used multi-filter Hubble Space Telescope (HST) observations of massive galaxy clusters with sufficient cadence to make the observed SN Ia light curves suitable for a cosmological probe of dark energy at z > 0.5. This See Change sample of SNe Ia with multi-colour light curves will be the largest to date at these redshifts. As part of the See Change programme, we obtained ground-based spectroscopy of each discovered transient and/or its host galaxy. Here we present Very Large Telescope (VLT) spectra of See Change transient host galaxies, deriving their redshifts, and host parameters such as stellar mass and star formation rate. Of the 39 See Change transients/hosts that were observed with the VLT, we successfully determined the redshift for 26, including 15 SNe Ia at z > 0.97. We show that even in passive environments, it is possible to recover secure redshifts for the majority of SN hosts out to z = 1.5. We find that with typical exposure times of 3 - 4 hrs on an 8m-class telescope we can recover ~75% of SN Ia redshifts in the range of 0.97 < z < 1.5. Furthermore, we show that the combination of HST photometry and VLT spectroscopy is able to provide estimates of host galaxy stellar mass that are sufficiently accurate for use in a mass-step correction in the cosmological analysis.

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