论文标题

关于宇宙学分析中质量表堕落的评论

Comments on the mass sheet degeneracy in cosmography analyses

论文作者

Teodori, Luca, Blum, Kfir, Castorina, Emanuele, Simonović, Marko, Soreq, Yotam

论文摘要

我们在Hubble参数$ H_0 $的强镜头测量中对建模脱糖片进行了许多评论。第一点涉及与视线不同段相关的弱镜头的影响。我们表明,除了通常的观察者 - 源术语外,还需要将与镜头源和观察者镜头段相关的外部收敛项还包括在cosmographing建模中,以避免在推断值$ h_0 $中的系统偏见。具体而言,我们展示了某些视线术语的不完整说明如何偏见恒星运动学以及射线追踪模拟方法以减轻质量板退化。第二点涉及在给定系统中使用成像数据对多个强镜源的使用。我们表明,多种来源的可用性并未完全解决质量表退化:由于不同来源之间的外部收敛差异,某些退化性仍然存在。同样,差分外部收敛也使使用多个来源在解决镜头星系中与局部(“内部”)核心分量相关的近似质量板退化时复杂化。该内部外部退化性通过角色直径距离随着红移的函数的非单调性而扩大。为了对弱透镜效应进行粗略评估,我们使用非线性物质功率谱提供了外部收敛的估计,并注意非等量的时间相关器。

We make a number of comments regarding modeling degeneracies in strong lensing measurements of the Hubble parameter $H_0$. The first point concerns the impact of weak lensing associated with different segments of the line of sight. We show that external convergence terms associated with the lens-source and observer-lens segments need to be included in cosmographic modeling, in addition to the usual observer-source term, to avoid systematic bias in the inferred value of $H_0$. Specifically, we show how an incomplete account of some line of sight terms biases stellar kinematics as well as ray tracing simulation methods to alleviate the mass sheet degeneracy. The second point concerns the use of imaging data for multiple strongly-lensed sources in a given system. We show that the mass sheet degeneracy is not fully resolved by the availability of multiple sources: some degeneracy remains because of differential external convergence between the different sources. Similarly, differential external convergence also complicates the use of multiple sources in addressing the approximate mass sheet degeneracy associated with a local ("internal") core component in lens galaxies. This internal-external degeneracy is amplified by the non-monotonicity of the angular diameter distance as a function of redshift. For a rough assessment of the weak lensing effects, we provide estimates of external convergence using the nonlinear matter power spectrum, paying attention to non-equal time correlators.

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