Progressive Red Shifts in the Late-Time Spectra of Type Ia Supernovae
arXiv:1604.01044 · doi:10.1093/mnras/stw1680
Abstract
We examine the evolution of late-time, optical nebular features of Type Ia supernovae (SNe Ia) using a sample consisting of 160 spectra of 27 normal SNe Ia taken from the literature as well as unpublished spectra of SN 2008Q and ASASSN-14lp. Particular attention was given to nebular features between 4000-6000 A in terms of temporal changes in width and central wavelength. Analysis of the prominent late-time 4700 A feature shows a progressive central wavelength shift from ~4600 A to longer wavelengths out to at least day +300 for our entire sample. We find no evidence for the feature's red-ward shift slowing or halting at an [Fe III] blend centroid of 4701 A as has been proposed. The width of the feature also steadily increases with a FWHM ~170 A at day +100 growing to 200 A or more by day +350. Two weaker adjacent features around 4850 and 5000 A exhibit very similar red shifts to that of the 4700 A feature but show no change in width until very late times. We discuss possible causes for the observed red-ward shifting of these late-time optical features including contribution from [Co II] emission at early nebular epochs and the emergence of additional features at later times. We conclude that the ubiquitous red shift of these common late-time, nebular SN Ia spectral features is not mainly due to a decrease in a blueshift of forbidden Fe lines but the result, in part, of decreasing velocity and/or optical depth of permitted Fe lines.
12 pages, 9 figures, accepted for publication in MNRAS
References in corpus (17)
- The Spectroscopic Diversity of Type Ia Supernovae
- Type Ia Supernovae as Stellar Endpoints and Cosmological Tools
- Optical Spectroscopy of Type Ia Supernovae
- ESC and KAIT Observations of the Transitional Type Ia SN 2004eo
- Consistent estimates of (56)Ni yields for type Ia supernovae
- Comparative Direct Analysis of Type Ia Supernova Spectra. V. Insights from A Larger Sample and Quantitative Subclassification
- Nebular spectra and abundance tomography of the type Ia supernova SN 2011fe: a normal SN Ia with a stable Fe core
- Measuring nickel masses in Type Ia supernovae using cobalt emission in nebular phase spectra
- The Young and Bright Type Ia Supernova ASASSN-14lp: Discovery, Early-Time Observations, First-Light Time, Distance to NGC 4666, and Progenitor Constraints
- Asymmetric Explosion of Type Ia Supernovae as Seen from Near Infrared Observations
- 500 Days of SN 2013dy: spectra and photometry from the ultraviolet to the infrared
- Constraining the Progenitor Companion of the Nearby Type Ia SN 2011fe with a Nebular Spectrum at +981 Days
- A one-dimensional Chandrasekhar-mass delayed-detonation model for the broad-lined Type Ia supernova 2002bo
- Thermonuclear Supernovae: Probing Magnetic Fields by Late-Time IR Line Profiles
- Comparative Direct Analysis of Type Ia Supernova Spectra. IV. Postmaximum
- Spectroscopy of the Type Ia supernova 2011fe past 1000 days
- Near-infrared line identification in type Ia supernovae during the transitional phase
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