论文标题

视线结构对$ H_0 $的影响,并使用强烈的镜头时间延期

The impact of line-of-sight structures on measuring $H_0$ with strong lensing time-delays

论文作者

Li, Nan, Becker, Christoph, Dye, Simon

论文摘要

早期和局部观察结果的哈勃 - 莱默特雷常数的测量显示出显着的差异。为了理解这种不匹配的起源,需要进行测量H0的独立技术。由于即将推出的大型强透镜样品,一种这样的技术,强大的镜头时间延迟将成为无数方法中的主要竞争者。因此,了解该方法固有的系统效应至关重要。在本文中,我们通过采用源自Cosmodc2半分析外半乳酸目录的逼真的光锥来量化沿着视线的其他结构的影响。使用多个透镜平面射线追踪创建一组模拟的强镜头系统,我们研究了视线结构对时间延迟测量的影响,然后对H0的推断值进行了延迟测量。我们还测试了现有程序的可靠性,以纠正视线效果。我们发现,如果视线结构的集成贡献接近均匀的质量表,则可以通过在镜头模型中包括恒定的外部收敛$κ_{EXT} $来充分纠正H0中的偏差。但是,对于包括不同红移的许多星系组成的现实视线结构,这种简单的校正将偏差高于线性取决于中值外部收敛性的数量。因此,我们得出的结论是,镜头建模必须合并多个透镜平面,以说明视线结构的准确和精确的H0。

Measurements of The Hubble-Lemaitre constant from early- and local-universe observations show a significant discrepancy. In an attempt to understand the origin of this mismatch, independent techniques to measure H0 are required. One such technique, strong lensing time delays, is set to become a leading contender amongst the myriad methods due to forthcoming large strong lens samples. It is therefore critical to understand the systematic effects inherent in this method. In this paper, we quantify the influence of additional structures along the line-of-sight by adopting realistic light cones derived from the CosmoDC2 semi-analytical extra-galactic catalogue. Using multiple lens plane ray-tracing to create a set of simulated strong lensing systems, we have investigated the impact of line-of-sight structures on time-delay measurements and in turn, on the inferred value of H0. We have also tested the reliability of existing procedures for correcting for line-of-sight effects. We find that if the integrated contribution of the line-of-sight structures is close to a uniform mass sheet, the bias in H0 can be adequately corrected by including a constant external convergence $κ_{ext}$ in the lens model. However, for realistic line-of-sight structures comprising many galaxies at different redshifts, this simple correction overestimates the bias by an amount that depends linearly on the median external convergence. We, therefore, conclude that lens modelling must incorporate multiple lens planes to account for line-of-sight structures for accurate and precise inference of H0.

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