Time-Varying Sodium Absorption in the Type Ia Supernova 2013gh
arXiv:1605.01738 · doi:10.1051/0004-6361/201628351
Abstract
Temporal variability of narrow absorption lines in high-resolution spectra of Type Ia supernovae (SNe Ia) is studied to search for circumstellar matter. Time series which resolve the profiles of absorption lines such as Na I D or Ca II H&K are expected to reveal variations due to photoionisation and subsequent recombination of the gases. The presence, composition, and geometry of circumstellar matter may hint at the elusive progenitor system of SNe Ia and could also affect the observed reddening law. To date, there are few known cases of time-varying Na I D absorption in SNe Ia, all of which occurred during relatively late phases of the supernova evolution. Photoionisation, however, is predicted to occur during the early phases of SNe Ia, when the supernova peaks in the ultraviolet. We therefore attempt to observe early-time absorption-line variations by obtaining high-resolution spectra of SNe before maximum light. We have obtained photometry and high-resolution spectroscopy of SNe Ia 2013gh and iPTF 13dge, to search for absorption- line variations. Furthermore, we study interstellar absorption features in relation to the observed photometric colours of the SNe. Results. Both SNe display deep Na I D and Ca II H&K absorption features. Furthermore, small but significant variations are detected in a feature of the Na I D profile of SN 2013gh. The variations are consistent with either geometric effects of rapidly moving or patchy gas clouds or photoionisation of Na I gas at R \approx 1019 cm from the explosion. Our analysis indicates that it is necessary to focus on early phases to detect photoionisation effects of gases in the circumstellar medium of SNe Ia. Different absorbers such as Na I and Ca II can be used to probe for matter at different distances from the SNe.
accepted for publication in A&A
References in corpus (19)
- Molecfit: A general tool for telluric absorption correction. I. Method and application to ESO instruments
- Molecfit: A general tool for telluric absorption correction II. Quantitative evaluation on ESO-VLT X-Shooter spectra
- SOUSA: the Swift Optical/Ultraviolet Supernova Archive
- Radiative recombination data for modelling dynamic finite-density plasmas
- Variable Sodium Absorption in a Low-Extinction Type Ia Supernova
- SN~2012cg: Evidence for Interaction Between a Normal Type Ia Supernova and a Non-Degenerate Binary Companion
- Extensive HST Ultraviolet Spectra and Multi-wavelength Observations of SN 2014J in M82 Indicate Reddening and Circumstellar Scattering by Typical Dust
- The rise of SN2014J in the nearby galaxy M82
- No X-rays from the very nearby Type Ia SN2014J: constraints on its environment
- A Deep Search for Prompt Radio Emission from Thermonuclear Supernovae with the Very Large Array
- Diversity in extinction laws of Type Ia supernovae measured between and
- Properties of extragalactic dust inferred from linear polarimetry of Type Ia Supernovae
- Swift Ultraviolet Observations of Supernova 2014J in M82: Large Extinction from Interstellar Dust
- Circumstellar Na I and Ca II lines of type Ia supernovae in symbiotic scenario
- Light Echoes From Supernova 2014J in M82
- Time-Varying Potassium in High-Resolution Spectra of the Type Ia Supernova 2014J
- Dusting off the diffuse interstellar bands: DIBs and dust in extragalactic SDSS spectra
- Herschel limits on far-infrared emission from circumstellar dust around nearby Type Ia supernovae
- Sodium Absorption Systems toward SN Ia 2014J Originate on Interstellar Scales
Cited by in corpus (17)
- Observational Properties of Thermonuclear Supernovae
- Theoretical Models of Optical Transients. I. A Broad Exploration of the Duration-Luminosity Phase Space
- Surface Radioactivity or Interactions? Multiple Origins of Early-excess Type Ia Supernovae and Associated Subclasses
- Determining the Ni distribution of type Ia supernovae from observations within days of explosion
- Near-IR Type Ia SN distances: host galaxy extinction and mass-step corrections revisited
- Shedding light on the Type Ia supernova extinction puzzle: dust location found
- Observations of the Very Young Type Ia Supernova 2019np with Early-excess Emission
- Estimating dust distances to Type Ia supernovae from colour excess time-evolution
- Spectroscopy of the first resolved strongly lensed Type Ia supernova iPTF16geu
- From Out of the Blue: Swift Links 2002es-like, 2003fg-like, and Early-Time Bump Type Ia Supernovae
- Observations of Type Ia Supernova 2014J for Nearly 900 Days and Constraints on Its Progenitor System
- Probing gas and dust in the tidal tail of NGC 5221 with the type Ia supernova iPTF16abc
- No evidence of circumstellar gas surrounding Type Ia Supernova SN 2017cbv
- High-velocity feature as the indicator of the stellar population of Type Ia supernovae
- Type Ia supernovae with and without blueshifted narrow Na I D lines - how different is their structure?
- Narrow absorption lines from intervening material in supernovae I. Measurements and temporal evolution
- Narrow absorption lines from intervening material in supernovae. II. Galaxy properties