论文标题
第一个解决的强烈镜头IA Supernova IPTF16GEU的光谱法
Spectroscopy of the first resolved strongly lensed Type Ia supernova iPTF16geu
论文作者
论文摘要
我们报告了通过基于地面望远镜和哈勃太空望远镜(HST)获得的强镜IA超新星(SN IA),IPTF16GEU的多个图像的光谱观察结果。从带有HST的无狭窄光谱时期的单个时期,我们可以首次解决单个镜头超新星图像的光谱。这使我们能够对两个最亮图像之间的时间延迟进行独立的测量,$ΔT= 1.4 \ pm 5.0 $天,这与从光曲线测得的时间延迟一致。 我们还介绍了狭窄的发射和吸收线的测量值,这些狭窄的发射和吸收线表征了Z = 0.4087的宿主星系中的星际培养基,以及在Z = 0.2163时的前景镜头星系中。我们在宿主星系中检测到强大的NA ID吸收,表明IPTF16GEU属于SNE IA的子类,与从其光曲线得出的灰尘灭绝量相比,显示出“异常”的大NA ID柱密度。对于偏转星系,我们完善了速度分散剂的测量,$σ= 129 \ pm 4 $ km/s,这显着限制了镜头模型。 由于SN图像之间的时间延迟可以忽略不计,因此我们可以使用未解决的基于地面的光谱法,从镜头放大镜头〜70个因子提高,以研究具有前所未有的信噪比的高Z SN IA的性质。 The spectral properties of the supernova, such as pseudo-Equivalent widths of several absorption features and velocities of the Si II-line indicate that iPTF16geu, besides being lensed, is a normal SN Ia, indistinguishable from well-studied ones in the local universe, providing support for the use of SNe Ia in precision cosmology.我们没有检测到Sn光谱能分布与恒星对SN光球的微晶的任何显着偏差,并在镜头星系中的紧凑物体。
We report the results from spectroscopic observations of the multiple images of the strongly lensed Type Ia supernova (SN Ia), iPTF16geu, obtained with ground based telescopes and the Hubble Space Telescope (HST). From a single epoch of slitless spectroscopy with HST, we can resolve spectra of individual lensed supernova images for the first time. This allows us to perform an independent measurement of the time-delay between the two brightest images, $Δt = 1.4 \pm 5.0$ days, which is consistent with the time-delay measured from the light-curves. We also present measurements of narrow emission and absorption lines characterizing the interstellar medium in the host galaxy at z=0.4087, as well as in the foreground lensing galaxy at z=0.2163. We detect strong Na ID absorption in the host galaxy, indicating that iPTF16geu belongs to a subclass of SNe Ia displaying "anomalously" large Na ID column densities in comparison to the amount of dust extinction derived from their light curves. For the deflecting galaxy, we refine the measurement of the velocity dispersion, $σ= 129 \pm 4$ km/s, which significantly constrains the lens model. Since the time-delay between the SN images is negligible, we can use unresolved ground based spectroscopy, boosted by a factor ~70 from lensing magnification, to study the properties of a high-z SN Ia with unprecedented signal-to-noise ratio. The spectral properties of the supernova, such as pseudo-Equivalent widths of several absorption features and velocities of the Si II-line indicate that iPTF16geu, besides being lensed, is a normal SN Ia, indistinguishable from well-studied ones in the local universe, providing support for the use of SNe Ia in precision cosmology. We do not detect any significant deviations of the SN spectral energy distribution from microlensing of the SN photosphere by stars and compact objects in the lensing galaxy.