A highly-ionized region surrounding SN Refsdal revealed by MUSE
arXiv:1509.07515 · doi:10.1051/0004-6361/201527443
Abstract
Supernova (SN) Refsdal is the first multiply-imaged, highly-magnified, and spatially-resolved SN ever observed. The SN exploded in a highly-magnified spiral galaxy at z=1.49 behind the Frontier Fields Cluster MACS1149, and provides a unique opportunity to study the environment of SNe at high z. We exploit the time delay between multiple images to determine the properties of the SN and its environment, before, during, and after the SN exploded. We use the integral-field spectrograph MUSE on the VLT to simultaneously target all observed and model-predicted positions of SN Refsdal. We find MgII emission at all positions of SN Refsdal, accompanied by weak FeII* emission at two positions. The measured ratios of [OII] to MgII emission of 10-20 indicate a high degree of ionization with low metallicity. Because the same high degree of ionization is found in all images, and our spatial resolution is too coarse to resolve the region of influence of SN Refsdal, we conclude that this high degree of ionization has been produced by previous SNe or a young and hot stellar population. We find no variability of the [OII] line over a period of 57 days. This suggests that there is no variation in the [OII] luminosity of the SN over this period, or that the SN has a small contribution to the integrated [OII] emission over the scale resolved by our observations.
5 pages, 4 figures, accepted for publication in A&A
References in corpus (14)
- Ubiquitous outflows in DEEP2 spectra of star-forming galaxies at z=1.4
- Momentum Injection by Supernovae in the Interstellar Medium
- Multiple Images of a Highly Magnified Supernova Formed by an Early-Type Cluster Galaxy Lens
- Supernova Feedback in an Inhomogeneous Interstellar Medium
- Resolved spectroscopy of gravitationally lensed galaxies: global dynamics and star-forming clumps on ~100pc scales
- MUSE integral-field spectroscopy towards the Frontier Fields Cluster Abell S1063: I. Data products and redshift identifications
- Discovery of the largest known lensed images formed by a critically convergent lensing cluster
- Revised Lens Model for the Multiply-Imaged Lensed Supernova, "SN Refsdal", in MACS J1149+2223
- Evolution of multiple supernova remnants
- Predicted properties of multiple images of the strongly lensed supernova SN Refsdal
- Stellar feedback from HMXBs in cosmological hydrodynamical simulations
- On the lack of correlation between Mg II 2796, 2803 Angstrom and Lyman alpha emission in lensed star-forming galaxies
- Probing Outflows in z= 1~2 Galaxies through FeII/FeII* Multiplets
- HII Region Metallicity Constraints Near the Site of the Strongly Lensed Supernova "SN Refsdal" at Redshift 1.49
Cited by in corpus (21)
- Cool Outflows in Galaxies and their Implications
- Strong lensing analysis of Abell 2744 with MUSE and Hubble Frontier Fields images
- The story of supernova 'Refsdal' told by MUSE
- "Refsdal" meets Popper: comparing predictions of the re-appearance of the multiply imaged supernova behind MACSJ1149.5+2223
- The BOSS Emission-Line Lens Survey. IV. : Smooth Lens Models for the BELLS GALLERY Sample
- HFF-DeepSpace Photometric Catalogs of the Twelve Hubble Frontier Fields, Clusters and Parallels: Photometry, Photometric Redshifts, and Stellar Masses
- A Close Relationship between Lyman Alpha and Mg II in Green Pea Galaxies
- The Grism Lens-Amplified Survey from Space (GLASS) X. Sub-kpc resolution gas-phase metallicity maps at cosmic noon behind the Hubble Frontier Fields cluster MACS1149.6+2223
- ALMA Lensing Cluster Survey: and Photometry of 33 Lensed Fields Built with CHArGE
- Kinematics, Turbulence and Star Formation of z ~1 Strongly Lensed Galaxies seen with MUSE
- SN Refsdal: Classification as a Luminous and Blue SN 1987A-like Type II Supernova
- Galactic Winds with MUSE: A Direct Detection of FeII* Emission from a z = 1.29 Galaxy
- The MUSE Hubble Ultra Deep Field Survey: XII. MgII emission and absorption in star-forming galaxies
- Assessing the sources of reionisation: a spectroscopic case study of a 30 lensed galaxy at with Lyα, CIV, MgII, and [NeIII]
- Faint end of the luminosity function of Lyman-alpha emitters behind lensing clusters observed with MUSE
- The Magnificent Five Images of Supernova Refsdal: Time Delay and Magnification Measurements
- The core of the massive cluster merger MACS J0417.5-1154 as seen by VLT/MUSE
- Prediction of Supernova Rates in Known Galaxy-galaxy Strong-lens Systems
- Kinematics of the SN Refsdal host revealed by MUSE: a regularly rotating spiral galaxy at z~1.5
- Mass Modeling of Frontier Fields Cluster MACS J1149.5+2223 Using Strong and Weak Lensing
- Improved model of the Supernova Refsdal cluster MACS J1149.5+2223 thanks to VLT/MUSE