Unburned Material in the Ejecta of Type Ia Supernovae
arXiv:1110.3789 · doi:10.1088/0004-637X/745/1/74
Abstract
(Abridged) The presence of unburned material in the ejecta of normal Type Ia supernovae (SNeIa) is investigated using early-time spectroscopy obtained by the CSP. The tell-tale signature of pristine material from a C+O white dwarf progenitor star is the presence of carbon. The most prominent carbon lines in optical spectra of SNeIa are due to C II. We find that at least 30% of the objects in the sample show an absorption at ~6300 AA which is attributed to C II 6580. An association to H_alpha is considered to be unlikely. These findings imply a larger incidence of carbon in SNeIa ejecta than previously noted. We show how observational biases and physical conditions may hide these C II lines, and account for the scarcity of previous carbon detections. This relatively large frequency of carbon detections has crucial implications on our understanding of the explosive process. The observations indicate that carbon is present merely ~1000 km s^-1 above the bulk of Si II. Spectral modeling shows the detections are consistent with a mass of carbon of 10^-3--10^-2 M_sun. This would imply substantial mixing, which may be related to asymmetries of the flame propagation or clumps of unburned material along the line of sight. However, the uniformity of the relation between C II and Si II velocities is not consistent with the latter scenario. The observational properties of SNeIa with and without carbon signatures are compared. A trend toward bluer color and lower luminosity is found for objects with carbon.
Submitted to ApJ on June 20, 2011. 19 pages, 19 figures, 4 tables. Minor changes applied after second referee report
References in corpus (19)
- The type Ia supernova SNLS-03D3bb from a super-Chandrasekhar-mass white dwarf star
- A Common Explosion Mechanism for Type Ia Supernovae
- The Carnegie Supernova Project: Second Photometry Data Release of Low-Redshift Type Ia Supernovae
- Improved Distances to Type Ia Supernovae with Two Spectroscopic Subclasses
- The Luminous and Carbon-Rich Supernova 2006gz: A Double Degenerate Merger?
- SN 2003du: 480 days in the Life of a Normal Type Ia Supernova
- On the Origin of the Type Ia Supernova Width-Luminosity Relation
- 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
- Consistent estimates of (56)Ni yields for type Ia supernovae
- The impact of type Ia supernovae on main sequence binary companions
- The Dependence of the Mass Assembly History of Cold Dark Matter Halos on Environment
- The Outermost Ejecta of Type Ia Supernovae
- Optical and IR observations of SN 2002dj: some possible common properties of fast expanding SNe Ia
- Abundance stratification in Type Ia Supernovae - II: The rapidly declining, spectroscopically normal SN 2004eo
- The early spectral evolution of SN 2004dt
- 3D Models for High Velocity Features in Type Ia Supernovae
- Low Carbon Abundance in Type Ia Supernovae
- Comparative Direct Analysis of Type Ia Supernova Spectra. III. Premaximum
Cited by in corpus (69)
- Observational clues to the progenitors of Type-Ia supernovae
- Type Iax Supernovae: A New Class of Stellar Explosion
- The Spectroscopic Diversity of Type Ia Supernovae
- Spectrophotometric time series of SN 2011fe from the Nearby Supernova Factory
- Spectroscopy of Type Ia Supernovae by the Carnegie Supernova Project
- Observational Properties of Thermonuclear Supernovae
- Type Ia supernova bolometric light curves and ejected mass estimates from the Nearby Supernova Factory
- One-dimensional delayed-detonation models of Type Ia supernovae: Confrontation to observations at bolometric maximum
- The Fast and Furious Decay of the Peculiar Type Ic Supernova 2005ek
- Diversity in extinction laws of Type Ia supernovae measured between and
- Exploring the spectral diversity of low-redshift Type Ia supernovae using the Palomar Transient Factory
- Nebular spectra and abundance tomography of the type Ia supernova SN 2011fe: a normal SN Ia with a stable Fe core
- The Low-Velocity, Rapidly Fading Type Ia Supernova 2002es
- Strong near-infrared carbon in the Type Ia supernova iPTF13ebh
- Carnegie Supernova Project-II: The Near-infrared Spectroscopy Program
- Spectroscopic Observations of SN 2012fr: A Luminous Normal Type Ia Supernova with Early High Velocity Features and Late Velocity Plateau
- Photometric and Spectroscopic Properties of Type Ia Supernova 2018oh with Early Excess Emission from the 2 Observations
- The Earliest Near-infrared Time-series Spectroscopy of a Type Ia Supernova
- Carbon Detection in Early-Time Optical Spectra of Type Ia Supernovae
- The Very Young Type Ia Supernova 2012cg: Discovery and Early-Time Follow-Up Observations
- Early Observations and Analysis of the Type Ia SN 2014J in M82
- Hubble Space Telescope and Ground-Based Observations of the Type Iax Supernovae SN 2005hk and SN 2008A
- Sensitivity study of explosive nucleosynthesis in Type Ia supernovae: I. Modification of individual thermonuclear reaction rates
- Double-Detonation Models for Type Ia Supernovae: Trigger of Detonation in Companion White Dwarfs and Signatures of Companions' Stripped-off Materials
- A review of type Ia supernova spectra
- Grouping Normal Type Ia Supernovae by UV to Optical Color Differences
- New approaches to SNe Ia progenitors
- Probing type Ia supernova properties using bolometric light curves from the Carnegie Supernova Project and the CfA Supernova Group
- Early observations of the nearby type Ia supernova SN 2015F
- The Young and Nearby Normal Type Ia Supernova 2018gv: UV-Optical Observations and the Earliest Spectropolarimetry
- The Silicon and Calcium High-Velocity Features in Type Ia Supernovae from Early to Maximum Phases
- On the type Ia supernovae 2007on and 2011iv: Evidence for Chandrasekhar-mass explosions at the faint end of the luminosity-width relationship
- Optical and near infrared observations of SN 2014ck: an outlier among the Type Iax supernovae
- A Bright Ultraviolet Excess in the Transitional 02es-like Type Ia Supernova 2019yvq
- Supernova SN 2012dn: A spectroscopic clone of SN 2006gz
- Constraining the Progenitor System of the Type Ia Supernova 2021aefx
- The Changing Fractions of Type Ia Supernova NUV-Optical Subclasses with Redshift
- Revealing progenitors of type Ia supernovae from their light curves and spectra
- The Oxygen Features in Type Ia Supernovae and the Implications for the Nature of Thermonuclear Explosions
- ASASSN-15hy: an under-luminous, red 03fg-like type Ia supernova
- SN 2020kyg and the rates of faint Iax Supernovae from ATLAS
- Persistent C II Absorption in the Normal Type Ia Supernova 2002fk
- SN 2012dn from early to late times: 09dc-like supernovae reassessed
- ASASSN-15pz: Revealing Significant Photometric Diversity among 2009dc-like, Peculiar SNe Ia
- Constraining the Source of the High-velocity Ejecta in Type Ia SN 2019ein
- Discovery and Follow-up Observations of the Young Type Ia Supernova 2016coj
- Observations of the low-luminosity Type Iax supernova 2019gsc: a fainter clone of SN 2008ha?
- Initial Flash and Spectral Formation of Type Ia Supernovae with An Envelope: Applications to Over-luminous SNe Ia
- SN 2011fe: A Laboratory for Testing Models of Type Ia Supernovae
- Spectral sequences of Type Ia supernovae. I. Connecting normal and sub-luminous SN Ia and the presence of unburned carbon
- The Early Light Curve of SN 2023bee: Constraining Type Ia Supernova Progenitors the Apian Way
- Strong Near-Infrared Carbon Absorption in the Transitional Type Ia SN 2015bp
- SN 2017cfd: A Normal Type Ia Supernova Discovered Very Young
- SN 2015bp: adding to the growing population of transitional type Ia supernovae
- The Ultraviolet Colors of Type Ia Supernovae and their Photospheric Velocities
- Spectral Models for Early Time SN 2011fe Observations
- Spectral sequences of Type Ia supernovae. II. Carbon as a diagnostic tool for explosion mechanisms
- Insights into thermonuclear supernovae from the incomplete silicon burning process
- A study of Si II and S II features in spectra of Type Ia supernova
- SN 2024bfu, SN 2025qe, and the early light curves of type Iax supernovae
- SN 2017hpa: A Nearby Carbon-Rich Type Ia Supernova with a Large Velocity Gradient
- SN 2017hpa: A carbon-rich type Ia supernova
- Multi-epoch Spectropolarimetry of SN 2011fe
- The Type Ia Supernova 2021hem: A 2003fg-like Event in an Apparently Hostless Environment
- Type Ia supernovae SN 2013bz, PSN J0910+5003 and ASASSN-16ex: similar to 09dc-like?
- Abundance stratification in type Ia supernovae -- VII. The peculiar, C-rich iPTF16abc: highlighting diversity among luminous events
- Puzzling High-Velocity Calcium Absorption Features Of Type Ia Supernovae
- Normal or transitional? The evolution and properties of two type Ia supernovae in the Virgo cluster
- Strong Carbon Features and a Red Early Color in the Underluminous Type Ia SN 2022xkq