论文标题

TDCOSMO VI:在质量表变换下的时间延迟宇宙学的距离测量值

TDCOSMO VI: Distance Measurements in Time-delay Cosmography under the Mass-sheet transformation

论文作者

Chen, Geoff C. -F., Fassnacht, Christopher D., Suyu, Sherry H., Yıldırım, Akın, Komatsu, Eiichiro, Bernal, Jose Luis

论文摘要

带有重力镜头类星体的时间延迟宇宙学在锚定绝对距离尺度上起着重要的作用,因此测量了哈勃常数,$ h_ {0} $,独立于传统的距离阶梯方法。当前的时间延迟距离测量值的当前潜在限制是“质量表变换”(MST),它使镜头成像不变,但会改变距离测量值和$ H_0 $的派生值。在这项工作中,我们表明,通过高分辨率成像的结合以及对镜头银河系的恒星速度分散的测量来解决MST延迟宇宙学的标准方法取决于以下假设:$ d _ {\ rm s}/d _ {\ rm s}/d _ {镜头星系和类星体可以受到限制。这通常是通过假设特定宇宙学模型来实现的。在$λ$ CDM模型的假设下,以前的工作(TDCOSMO IV)解决了质量表脱落的问题,并得出了$ h_ {0} $。在本文中,我们表明,可以通过将镜头与超级距离指标(例如超新星IA型和Baryon声学振荡)相结合,而无需依赖特定的宇宙学模型而破裂,从而限制了扩展历史的形状,从而限制了$ d _ {\ rm s}/d _}/d _ {\ rm rm ds} $。通过这种方法,我们证明可以以宇宙模型独立的方式来限制质量表脱落性,因此可以在质量播放量的时间表转换下进行时间延迟宇宙学的模型无关距离测量值。

Time-delay cosmography with gravitationally lensed quasars plays an important role in anchoring the absolute distance scale and hence measuring the Hubble constant, $H_{0}$, independent of traditional distance ladder methodology. A current potential limitation of time delay distance measurements is the "mass-sheet transformation" (MST) which leaves the lensed imaging unchanged but changes the distance measurements and the derived value of $H_0$. In this work we show that the standard method of addressing the MST in time delay cosmography, through a combination of high-resolution imaging and the measurement of the stellar velocity dispersion of the lensing galaxy, depends on the assumption that the ratio, $D_{\rm s}/D_{\rm ds}$, of angular diameter distances to the background quasar and between the lensing galaxy and the quasar can be constrained. This is typically achieved through the assumption of a particular cosmological model. Previous work (TDCOSMO IV) addressed the mass-sheet degeneracy and derived $H_{0}$ under the assumption of $Λ$CDM model. In this paper we show that the mass sheet degeneracy can be broken without relying on a specific cosmological model by combining lensing with relative distance indicators such as supernovae type Ia and baryon acoustic oscillations, which constrain the shape of the expansion history and hence $D_{\rm s}/D_{\rm ds}$. With this approach, we demonstrate that the mass-sheet degeneracy can be constrained in a cosmological-model-independent way, and hence model-independent distance measurements in time-delay cosmography under mass-sheet transformations can be obtained.

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