English

Andromeda's Parachute: Time Delays and Hubble Constant

Astrophysics of Galaxies 2023-09-11 v1

Abstract

The gravitational lens system PS J0147+4630 (Andromeda's Parachute) consists of four quasar images ABCD and a lensing galaxy. We obtained rr-band light curves of ABCD in the 2017-2022 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%): ΔtAD\Delta t_{\rm{AD}} = -170.5 ±\pm 7.0, ΔtBD\Delta t_{\rm{BD}} = -170.4 ±\pm 6.0, and ΔtCD\Delta t_{\rm{CD}} = -177.0 ±\pm 6.5 d, where image D is trailing all the other images. Our finely sampled light curves and some additional fluxes in the years 2010-2013 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 s1^{-1} Mpc1^{-1}. We discuss how to account for a standard value of the Hubble constant without invoking the presence of an extraordinary high external convergence.

Keywords

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