English

Lens modelling of the strongly lensed Type Ia supernova iPTF16geu

Cosmology and Nongalactic Astrophysics 2020-06-17 v2

Abstract

In 2016, the first strongly lensed Type Ia supernova, iPTF16geu at redshift z=0.409z=0.409 with four resolved images arranged symmetrically around the lens galaxy at z=0.2163z=0.2163, was discovered. Here, refined observations of iPTF16geu, including the time delay between images, are used to decrease uncertainties in the lens model, including the the slope of the projected surface density of the lens galaxy, Σr1η\Sigma\propto r^{1-\eta}, and to constrain the universal expansion rate H0H_0. Imaging with HST provides an upper limit on the slope η\eta, in slight tension with the steeper density profiles indicated by imaging with Keck after iPTF16geu had faded, potentially due to dust extinction not corrected for in host galaxy imaging. Since smaller η\eta implies larger magnifications, we take advantage of the standard candle nature of Type Ia supernovae constraining the image magnifications, to obtain an independent constraint of the slope. We find that a smooth lens density fails to explain the iPTF16geu fluxes, regardless of the slope, and additional sub-structure lensing is needed. The total probability for the smooth halo model combined with star microlensing to explain the iPTF16geu image fluxes is maximized at 12%12\,\% for η1.8\eta\sim 1.8, in excellent agreement with Keck high spatial resolution data, and flatter than an isothermal halo. It also agrees perfectly with independent constraints on the slope from lens velocity dispersion measurements. Combining with the observed time delays between the images, we infer a lower bound on the Hubble constant, H040km s1Mpc1H_0 \gtrsim 40\,{\rm km \ s^{-1} Mpc^{-1}} at 68.3%68.3\,\% confidence level.

Keywords

Cite

@article{arxiv.1907.06609,
  title  = {Lens modelling of the strongly lensed Type Ia supernova iPTF16geu},
  author = {E. Mörtsell and J. Johansson and S. Dhawan and A. Goobar and R. Amanullah and D. A. Goldstein},
  journal= {arXiv preprint arXiv:1907.06609},
  year   = {2020}
}

Comments

12 pages, 9 figures. Expanded version with improved constraints accepted for publication in MNRAS