论文标题
大步:30个四次成像的自动统一型号
STRIDES: Automated uniform models for 30 quadruply imaged quasars
论文作者
论文摘要
引力时间延迟提供了强大的一步测量$ H_0 $,与所有其他探针无关。时间延迟宇宙学上的一种关键成分是高精度镜头模型。这些目前在计算和调查员时间方面获得的昂贵(分别为10 $^{5-6} $ CPU小时和$ \ sim $ 0.5-1年)。因此,对于利用当前十年中预计会发现的大量镜头,建模速度的重大改进是必要的。为了绕过这一障碍,Shajib等人的作品建设。 (2019年),我们开发了一个自动建模管道,并将其应用于30个四倍成像的类星体和一个镜头紧凑的星系的样本,该样品在多个频段中观察到了Hubble Space望远镜。我们的自动化管道可以在几个小时的人类时间和典型系统的计算时间<100 CPU小时的计算时间中得出30/31镜头的模型。对于每个镜头,我们提供关键参数的测量和放大倍数的预测以及多个图像的时间延迟。我们使用FERMAT电位差异(与时间延迟成比例)的稳定性来表征模型的宇宙学 - 准备力。建模选择。我们发现,对于10/30镜头,我们的模型是宇宙学或接近宇宙学级(<3%和3-5%的变化)。对于6/30镜头,模型接近宇宙学等级(5-10%)。这些结果基于信息学先验,需要通过进一步的分析来确认。但是,它们也可能通过扩展管道建模序列和选项来改进。总之,我们表明,大型强晶状体样品的统一宇宙学级建模已触及。
Gravitational time delays provide a powerful one step measurement of $H_0$, independent of all other probes. One key ingredient in time delay cosmography are high accuracy lens models. Those are currently expensive to obtain, both, in terms of computing and investigator time (10$^{5-6}$ CPU hours and $\sim$ 0.5-1 year, respectively). Major improvements in modeling speed are therefore necessary to exploit the large number of lenses that are forecast to be discovered over the current decade. In order to bypass this roadblock, building on the work by Shajib et al. (2019), we develop an automated modeling pipeline and apply it to a sample of 30 quadruply imaged quasars and one lensed compact galaxy, observed by the Hubble Space Telescope in multiple bands. Our automated pipeline can derive models for 30/31 lenses with few hours of human time and <100 CPU hours of computing time for a typical system. For each lens, we provide measurements of key parameters and predictions of magnification as well as time delays for the multiple images. We characterize the cosmography-readiness of our models using the stability of differences in Fermat potential (proportional to time delay) w.r.t. modeling choices. We find that for 10/30 lenses our models are cosmography or nearly cosmography grade (<3% and 3-5% variations). For 6/30 lenses the models are close to cosmography grade (5-10%). These results are based on informative priors and will need to be confirmed by further analysis. However, they are also likely to improve by extending the pipeline modeling sequence and options. In conclusion, we show that uniform cosmography grade modeling of large strong lens samples is within reach.