Andromeda's Parachute: Time Delays and Hubble Constant
Abstract
The gravitational lens system PS J0147+4630 (Andromeda's Parachute) consists of four quasar images ABCD and a lensing galaxy. We obtained -band light curves of ABCD in the 20172022 period from monitoring with two 2-m class telescopes. Applying state-of-the-art curve shifting algorithms to these light curves led to measurements of time delays between images, and the three independent delays relative to image D are accurate enough to be used in cosmological studies (uncertainty of about 4%): = 170.5 7.0, = 170.4 6.0, and = 177.0 6.5 d, where image D is trailing all the other images. Our finely sampled light curves and some additional fluxes in the years 20102013 also demonstrated the presence of significant microlensing variations. From the measured delays relative to image D and typical values of the external convergence, recent lens mass models yielded a Hubble constant that is in clear disagreement with currently accepted values around 70 km s Mpc. We discuss how to account for a standard value of the Hubble constant without invoking the presence of an extraordinary high external convergence.
Cite
@article{arxiv.2309.04285,
title = {Andromeda's Parachute: Time Delays and Hubble Constant},
author = {Vyacheslav N. Shalyapin and Luis J. Goicoechea and Karianne Dyrland and Håkon Dahle},
journal= {arXiv preprint arXiv:2309.04285},
year = {2023}
}
Comments
10 pages, 4 figures, 4 tables (full version of Table 2 is only available in electronic form). Accepted for publication in ApJ. arXiv admin note: substantial text overlap with arXiv:2206.09266