论文标题

测量具有微透镜的透镜类星体的积聚磁盘大小,并在多波段光曲线中延迟时间延迟

Measuring accretion disk sizes of lensed quasars with microlensing time delay in multi-band light curves

论文作者

Chan, J. H. H., Rojas, K., Millon, M., Courbin, F., Bonvin, V., Jauffret, G.

论文摘要

强烈镜头类星体中的时间延迟宇宙学提供了一种测量哈勃常数$ H_0 $的独立方法。然而,已经提出,微晶晶和源尺寸效应(也称为微透明时间延迟)的组合可能会增加时间延迟测量的不确定性,并导致偏见的时间延迟。在这项工作中,我们首先研究了微透镜的时间延迟如何随着对初始质量函数(IMF)的假设而变化,并发现更大的微粒产生了微透镜时间延迟的更清晰的分布。我们还发现,IMF对放大概率分布有适度的影响。其次,我们提出了一种新方法,使用从多波段光曲线推断出的微透镜时间延迟,以测量镜头类星体中的颜色源尺寸。在实践中,相关的可观察到的是不同频段之间的微透明时间延迟。我们通过使用该设施为Vera C. Rubin天文台从模拟中显示,如果可以在任何给定的镜头图像中以$ 0.1 $的精确度来测量频段之间的差分时间延迟,则可以将磁盘尺寸恢复到$ 2 $的因子。如果使用四个镜头图像,我们的方法能够在$ 20 \%$的误差范围内实现无偏的源测量,这与其他技术相当。

Time-delay cosmography in strongly lensed quasars offer an independent way of measuring the Hubble constant, $H_0$. However, it has been proposed that the combination of microlensing and source-size effects, also known as microlensing time delay can potentially increase the uncertainty in time-delay measurements as well as lead to a biased time delay. In this work, we first investigate how microlensing time delay changes with assumptions on the initial mass function (IMF) and find that the more massive microlenses produce the sharper distributions of microlensing time delays. We also find that the IMF has modest effect on the the magnification probability distributions. Second, we present a new method to measure the color-dependent source size in lensed quasars using the microlensing time delays inferred from multi-band light curves. In practice the relevant observable is the differential microlensing time delays between different bands. We show from simulation using the facility as Vera C. Rubin Observatory that if this differential time delay between bands can be measured with a precision of $0.1$ days in any given lensed image, the disk size can be recovered to within a factor of $2$. If four lensed images are used, our method is able to achieve an unbiased source measurement within error of the order of $20\%$, which is comparable with other techniques.

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