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Quantifying Environmental and Line-of-sight Effects in Models of Strong Gravitational Lens Systems

机译:量化强引力透镜系统模型中的环境和视线影响

摘要

Matter near a gravitational lens galaxy or projected along the line of sight (LOS) can affect strong lensing observables by more than contemporary measurement errors. We simulate lens fields with realistic threedimensional mass configurations (self-consistently including voids), and then fit mock lensing observables with increasingly complex lens models to quantify biases and uncertainties associated with different ways of treating the lens environment (ENV) and LOS. We identify the combination of mass, projected offset, and redshift that determines the importance of a perturbing galaxy for lensing. Foreground structures have a stronger effect on the lens potential than background structures, due to nonlinear effects in the foreground and downweighting in the background. There is dramatic variation in the net strength of ENV/LOS effects across different lens fields; modeling fields individually yields stronger priors for H-0 than ray tracing through N-body simulations. Models that ignore mass outside the lens yield poor fits and biased results. Adding external shear can account for tidal stretching from galaxies at redshifts z >= z(lens), but it requires corrections for external convergence and cannot reproduce nonlinear effects from foreground galaxies. Using the tidal approximation is reasonable for most perturbers as long as nonlinear redshift effects are included. Even then, the scatter in H0 is limited by the lens profile degeneracy. Asymmetric image configurations produced by highly elliptical lens galaxies are less sensitive to the lens profile degeneracy, so they offer appealing targets for precision lensing analyses in future surveys like LSST and Euclid.
机译:重力透镜星系附近的物质或沿视线(LOS)投射的物质可能会比现代测量误差影响更多的可观察到的强透镜。我们用逼真的三维质量配置(自一致地包含空隙)模拟透镜场,然后将模拟透镜可观察物与日益复杂的透镜模型进行拟合,以量化与处理透镜环境(ENV)和LOS的不同方式相关的偏差和不确定性。我们确定质量,投影偏移和红移的组合,这些组合决定了摄动星系对镜头的重要性。由于前景中的非线性影响和背景中的减重,前景结构对镜头电位的影响要大于背景结构。在不同的镜片视野中,ENV / LOS效应的净强度差异很大。与通过N体模拟进行光线跟踪相比,对各个场进行建模分别会产生更强的H-0先验条件。忽略镜片外部质量的模型会产生差的合身性和偏见。添加外部剪切可以解释红移z> = z(lens)时来自星系的潮汐拉伸,但是它需要对外部会聚进行校正,并且不能重现前景星系的非线性影响。只要包括非线性红移效应,使用潮汐近似法对于大多数扰动者都是合理的。即使这样,H0中的散射也受镜头轮廓退化的限制。高椭圆形透镜星系产生的不对称图像配置对透镜轮廓的退化不太敏感,因此它们为诸如LSST和Euclid的未来调查中的精密透镜分析提供了有吸引力的目标。

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