A1 Refereed original research article in a scientific journal
Diversity in extinction laws of Type Ia supernovae measured between 0.2 and 2 mu m
Authors: Amanullah R, Johansson J, Goobar A, Ferretti R, Papadogiannakis S, Petrushevska T, Brown PJ, Cao Y, Contreras C, Dahle H, Elias-Rosa N, Fynbo JPU, Gorosabel J, Guaita L, Hangard L, Howell DA, Hsiao EY, Kankare E, Kasliwal M, Leloudas G, Lundqvist P, Mattila S, Nugent P, Phillips MM, Sandberg A, Stanishev V, Sullivan M, Taddia F, Ostlin G, Asadi S, Herrero-Illana R, Jensen JJ, Karhunen K, Lazarevic S, Varenius E, Santos P, Sridhar SS, Wallstrom SHJ, Wiegert J
Publisher: OXFORD UNIV PRESS
Publication year: 2015
Journal: Monthly Notices of the Royal Astronomical Society
Journal name in source: MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY
Journal acronym: MON NOT R ASTRON SOC
Volume: 453
Issue: 3
First page : 3300
Last page: 3328
Number of pages: 29
ISSN: 0035-8711
DOI: https://doi.org/10.1093/mnras/stv1505
We present ultraviolet (UV) observations of six nearby Type Ia supernovae (SNe Ia) obtained with the Hubble Space Telescope, three of which were also observed in the near-IR (NIR) with Wide-Field Camera 3. UV observations with the Swift satellite, as well as ground-based optical and NIR data provide complementary information. The combined data set covers the wavelength range 0.2-2 mu m. By also including archival data of SN 2014J, we analyse a sample spanning observed colour excesses up to E(B - V) = 1.4 mag. We study the wavelength-dependent extinction of each individual SN and find a diversity of reddening laws when characterized by the total-to-selective extinction R-V. In particular, we note that for the two SNe with E(B - V) greater than or similar to 1 mag, for which the colour excess is dominated by dust extinction, we find R-V = 1.4 +/- 0.1 and R-V = 2.8 +/- 0.1. Adding UV photometry reduces the uncertainty of fitted R-V by similar to 50 per cent allowing us to also measure R-V of individual low-extinction objects which point to a similar diversity, currently not accounted for in the analyses when SNe Ia are used for studying the expansion history of the Universe.