Comparative Analysis of Peculiar Type Ia 1991bg-like Supernovae Spectra
arXiv:1105.3328 · doi:10.1086/661023
Abstract
Spectroscopic analyses of Type Ia supernovae have shown there exist four spectroscopic groups---cools, broad line, shallow silicon, and core normal---defined by the widths of the Si II features at 5972 Angstroms and 6355 Angstroms. 1991bg-likes are classified as "cools". Cools are dim, undergo a rapid decline in luminosity, and produce significantly less nickel than normal Type Ia supernovae. They also have an unusually deep and wide trough in their spectra around 4200 Angstroms and a relatively strong Si II absorption attributed to the line at 5972 Angstroms. We examine the spectra of supernova (SN) 1991bg and the cools SN 1997cn, SN 1999by, and SN 2005bl using the highly parameterized synthetic spectrum code SYNOW, and find general agreement with similar spectroscopic studies. Our analysis reveals that this group of supernovae is fairly homogeneous, with many of the blue spectral features well fit by Fe II. The nature of the spectroscopic commonalities and the variations in the class are discussed. Finally, we examine intermediates such as SN 2004eo and discuss the spectroscopic subgroup distribution of Type Ia supernovae.
35 pages, 13 figures, 13 Tables, PASP 123, July 2011, in press
References in corpus (14)
- Observational Constraints on the Nature of the Dark Energy: First Cosmological Results from the ESSENCE Supernova Survey
- Improved Dark Energy Constraints from ~100 New CfA Supernova Type Ia Light Curves
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- Nearby Supernova Rates from the Lick Observatory Supernova Search. II. The Observed Luminosity Functions and Fractions of Supernovae in a Complete Sample
- The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star
- The Luminous and Carbon-Rich Supernova 2006gz: A Double Degenerate Merger?
- An asymmetric explosion as the origin of spectral evolution diversity in type Ia supernovae
- Violent mergers of nearly equal-mass white dwarf as progenitors of subluminous Type Ia supernovae
- The underluminous Type Ia Supernova 2005bl and the class of objects similar to SN 1991bg
- ESC and KAIT Observations of the Transitional Type Ia SN 2004eo
- A Study of Carbon Features in Type Ia Supernova Spectra
- Comparative Direct Analysis of Type Ia Supernova Spectra. V. Insights from A Larger Sample and Quantitative Subclassification
- Comparative Direct Analysis of Type Ia Supernova Spectra. IV. Postmaximum
- Goodness-of-Fit Tests DIFF1 and DIFF2 for Locally-Normalized Supernova Spectra
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