论文标题

微透析对重力时间延迟测量的观察策略的影响

Impact of Microlensing on Observational Strategies for Gravitational Time Delay Measurements

论文作者

Liao, Kai

论文摘要

微透镜不仅在固有的磁带上带来了额外的放大倍率,而且还会在时域中移动它们,从而使$ \ sim $ sim $日(S)发射区域的光线变化的强烈镜头活跃的银河系核的图像之间的实际时间表变化。微透镜引起的时间延期将使强透镜的时间延迟宇宙学偏向,如果未计数。但是,由于磁盘大小和磁盘模型的不确定性,很难准确估计影响。在这项工作中,我们研究了如何通过基于标准磁盘模型设计的观察策略来减少偏见。我们发现对图像的长时间监测可以减轻影响,因为由于源相对于镜头星系的特性运动,它平均会产生微透镜的时置图。此外,蓝带中的图像对应于较小的磁盘尺寸,因此也使时间延迟测量值受益。我们基于PG 1115+080样镜头的类星体进行了模拟。结果表明,由微透明引起的时间延迟分散剂可以减少$ \ sim40 \%$,而u频段相对于R频段减少了分散体的$ \ sim75 \%$。然而,在任何情况下,这种效果都不能完全消除。仍然需要进一步的研究以适当地将其纳入推断准确的哈勃常数。

Microlensing not only brings extra magnification lightcurves on top of the intrinsic ones but also shifts them in time domain, making the actual time-delays between images of strongly lensed active galactic nucleus change on the $\sim$ day(s) light-crossing time scale of the emission region. The microlensing-induced time-delays would bias strong lens time-delay cosmography if uncounted. However, due to the uncertainties of the disk size and the disk model, the impact is hard to accurately estimate. In this work, we study how to reduce the bias with designed observation strategy based on a standard disk model. We find long time monitoring of the images could alleviate the impact since it averages the microlensing time-lag maps due to the peculia motion of the source relative to the lens galaxy. In addition, images in bluer bands correspond to smaller disk sizes and therefore benefit time-delay measurements as well. We conduct a simulation based on a PG 1115+080-like lensed quasar. The results show the time-delay dispersions caused by microlensing can be reduced by $\sim40\%$ with 20-year lightcurves while u band relative to r band reduces $\sim75\%$ of the dispersions. Nevertheless, such an effect can not be totally eliminated in any cases. Further studies are still needed to appropriately incorporate it in inferring an accurate Hubble constant.

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