Large Late-time Asphericities in Three Type IIP Supernovae
arXiv:0912.2465 · doi:10.1088/0004-637X/713/2/1363
Abstract
Type II-plateau supernovae (SNe IIP) are the results of the explosions of red supergiants and are the most common subclass of core-collapse supernovae. Past observations have shown that the outer layers of the ejecta of SNe IIP are largely spherical, but the degree of asphericity increases toward the core. We present evidence for high degrees of asphericity in the inner cores of three recent SNe IIP (SNe 2006my, 2006ov, and 2007aa), as revealed by late-time optical spectropolarimetry. The three objects were all selected to have very low interstellar polarization (ISP), which minimizes the uncertainties in ISP removal and allows us to use the continuum polarization as a tracer of asphericity. The three objects have intrinsic continuum polarizations in the range of 0.83-1.56% in observations taken after the end of the photometric plateau, with the polarization dropping to almost zero at the wavelengths of strong emission lines. Our observations of SN 2007aa at earlier times, taken on the photometric plateau, show contrastingly smaller continuum polarizations (~0.1%). The late-time H-alpha and [O I] line profiles of SN 2006ov provide further evidence for asphericities in the inner ejecta. Such high core polarizations in very ordinary core-collapse supernovae provide further evidence that essentially all core-collapse supernova explosions are highly aspherical, even if the outer parts of the ejecta show only small deviations from spherical symmetry.
15 pages, 13 figures, minor revisions to match published version (2010, ApJ, 713, 1363)
References in corpus (23)
- The death of massive stars - I. Observational constraints on the progenitors of type II-P supernovae
- Determining the Type, Redshift, and Age of a Supernova Spectrum
- Delayed neutrino-driven supernova explosions aided by the standing accretion-shock instability
- Spectropolarimetry of Supernovae
- Type II Supernovae: Model Light Curves and Standard Candle Relationships
- Pulsar spins from an instability in the accretion shock of supernovae
- Asphericity in Supernova Explosions from Late-Time Spectroscopy
- Three-Dimensional Simulations of Mixing Instabilities in Supernova Explosions
- A non-spherical core in the explosion of supernova SN 2004dj
- Photometric and spectroscopic evolution of the type IIP supernova SN 2004et
- Nebular emission-line profiles of Type Ib/c Supernovae - probing the ejecta asphericity
- Features of the Acoustic Mechanism of Core-Collapse Supernova Explosions
- SN 2006bp: Probing the Shock Breakout of a Type II-P Supernova
- Double-peaked Oxygen Lines Are not Rare in Nebular Spectra of Core-Collapse Supernovae
- Doublets and Double Peaks: Late-Time [O I] 6300, 6364 Line Profiles of Stripped-Envelope, Core-Collapse Supernovae
- Optical and infrared observations of the Type IIP SN2002hh from day 3 to 397
- Spectropolarimetry of the Type Ib/c SN 2005bf
- The first year of SN 2004dj in NGC 2403
- The Dual-Axis Circumstellar Environment of the Type IIn Supernova 1997eg
- Spectropolarimetry of the Type IIb Supernova 2001ig
- On the nature of the progenitors of three type II-P supernovae: 2004et, 2006my and 2006ov
- Asymmetry of Ni ejecta and polarization in type IIP supernova 2004dj
- An Upper Mass Limit on a Red Supergiant Progenitor for the Type II-Plateau Supernova SN 2006my
Cited by in corpus (40)
- Type II-Plateau supernova radiation: dependencies on progenitor and explosion properties
- Multi-epoch spectropolarimetry of SN 2009ip: direct evidence for aspherical circumstellar material
- Constraining the physical properties of Type II-P supernovae using nebular phase spectra
- Asphericity, Interaction, and Dust in the Type II-P/II-L Supernova 2013ej in Messier 74
- Multimessengers from core-collapse supernovae: multidimensionality as a key to bridge theory and observation
- The Transitional Stripped-Envelope SN 2008ax: Spectral Evolution and Evidence for Large Asphericity
- Synthetic line and continuum linear-polarisation signatures of axisymmetric type II supernova ejecta
- Polarimetry of the superluminous supernova LSQ14mo: no evidence for significant deviations from spherical symmetry
- The Transient Gravitational-Wave Sky
- An Emerging Coherent Picture of Red Supergiant Supernova Explosions
- Twelve type II-P supernovae seen with the eyes of Spitzer
- After the Fall: Late-Time Spectroscopy of Type IIP Supernovae
- Time-resolved polarimetry of the superluminous SN 2015bn with the Nordic Optical Telescope
- Three-Dimensional Explosion Geometry of Stripped-Envelope Core-Collapse Supernovae. II. Modelling of Polarization
- Three-Dimensional Explosion Geometry of Stripped-Envelope Core-Collapse Supernovae. I. Spectropolarimetric Observations
- Non-LTE time-dependent spectroscopic modelling of type II-plateau supernovae from the photospheric to the nebular phase: case study for 15 and 25Msun progenitor stars
- The aspherical explosion of the Type IIP SN 2017gmr
- SN2012ab: A Peculiar Type IIn Supernova with Aspherical Circumstellar Material
- Asymmetry in the Outburst of SN 1987A Detected Using Light Echo Spectroscopy
- Spectropolarimetry of SN 2011dh in M51: geometric insights on a Type IIb supernova progenitor and explosion
- Spectropolarimetry of the Type Ib Supernova iPTF 13bvn: Revealing the complex explosion geometry of a stripped-envelope core-collapse supernova
- On the observational behaviour of the highly polarized Type IIn supernova SN 2017hcc
- Probing Interstellar Grain Growth Through Polarimetry in the Taurus Cloud Complex
- Supernova explosions interacting with aspherical circumstellar material: implications for light curves, spectral line profiles, and polarization
- Polarimetry of Hydrogen-Poor Superluminous Supernovae
- Broad band polarimetric investigation of Type IIP supernova 2013ej
- Evidence for multiple origins of fast declining Type II supernovae from spectropolarimetry of SN 2013ej and SN 2017ahn
- Late-Phase Spectropolarimetric Observations of Superluminous Supernova SN 2017egm to Probe the Geometry of the Inner Ejecta
- Multiepoch VLT-FORS spectro-polarimetric observations of supernova 2012aw reveal an asymmetric explosion
- Spectropolarimetry of Type II supernovae (II) Intrinsic supernova polarization and its relations with the photometric/spectroscopic properties
- Detection of supernova remnants in NGC 4030
- Multi-band polarization of Type IIP supernovae due to light echo from circumstellar dust
- Broad band polarimetric follow-up of Type IIP SN 2012aw
- Luminous Type II Short-Plateau SN 2023ufx: Asymmetric Explosion of a Partially-Stripped Massive Progenitor
- Circumstellar Light Echo as a Possible Origin of the Polarization of Type IIP Supernovae
- The Extremely Metal-Poor SN 2023ufx: A Local Analog to High-Redshift Type II Supernovae
- Spectropolarimetry of Type II supernovae (I) Sample, observational data and interstellar polarization
- SN 2016B a.k.a ASASSN-16ab: a transitional type II supernova
- Observational diversity of bright long-lived Type II supernovae
- The bright long-lived Type II SN 2021irp powered by aspherical circumstellar material interaction (II): Estimating the CSM mass and geometry with polarimetry and light curve modeling