Late-Phase Spectropolarimetric Observations of Superluminous Supernova SN 2017egm to Probe the Geometry of the Inner Ejecta
arXiv:2004.03140 · doi:10.3847/1538-4357/ab873b
Abstract
We present our spectropolarimetric observations of SN 2017egm, a Type I superluminous supernova (SLSN-I) in a nearby galaxy NGC 3191, with Subaru telescope at 185.0 days after the g-band maximum light. This is the first spectropolarimetric observation for SLSNe at late phases. We find that the degree of the polarization in the late phase significantly changes from that measured at the earlier phase. The spectrum at the late phase shows a strong Ca emission line and therefore we reliably estimate the interstellar polarization component assuming that the emission line is intrinsically unpolarized. By subtracting the estimated interstellar polarization, we find that the intrinsic polarization at the early phase is only ~ 0.2 %, which indicates an almost spherical photosphere, with an axial ratio ~ 1.05. The intrinsic polarization at the late phase increases to ~ 0.8 %, which corresponds to the photosphere with an axial ratio 1.2. A nearly constant position angle of the polarization suggests the inner ejecta are almost axisymmetric. By these observations, we conclude that the inner ejecta are more aspherical than the outer ejecta. It may suggest the presence of a central energy source producing aspherical inner ejecta.
9 pages, 4 figures, accepted for publication in ApJ
References in corpus (18)
- Pulsational pair instability as an explanation for the most luminous supernovae
- Spectropolarimetry of Supernovae
- Magnetorotational Core-Collapse Supernovae in Three Dimensions
- Asphericity in Supernova Explosions from Late-Time Spectroscopy
- A non-spherical core in the explosion of supernova SN 2004dj
- How much 56Ni can be produced in Core-Collapse Supernovae? : Evolution and Explosions of 30 - 100 Msun Stars
- Light Curve Modeling of Superluminous Supernova 2006gy: Collision between Supernova Ejecta and Dense Circumstellar Medium
- Double-peaked Oxygen Lines Are not Rare in Nebular Spectra of Core-Collapse Supernovae
- Hydrogen-Poor Superluminous Supernovae from the Pan-STARRS1 Medium Deep Survey
- Spectropolarimetry of superluminous supernovae: insight into their geometry
- Nebular Phase Observations of the Type Ib Supernova 2008D/X-ray Transient 080109: Side-Viewed Bipolar Explosion
- The superluminous supernova SN 2017egm in the nearby galaxy NGC 3191: a metal-rich environment can support a typical SLSN evolution
- Supernova ejecta with a relativistic wind from a central compact object: a unified picture for extraordinary supernovae
- Circumstellar interaction in supernovae in dense environments - an observational perspective
- Spatially resolved MaNGA observations of the host galaxy of superluminous supernova 2017egm
- 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
- The 3D shape of Type IIb SN 2011hs
Cited by in corpus (6)
- Superluminous supernovae: an explosive decade
- 2D radiation-hydrodynamic simulations of supernova ejecta with a central power source
- A Generalized Semi-Analytic Model for Magnetar-Driven Supernovae
- Post maximum light and late time optical imaging polarimetry of type I superluminous supernova 2020znr
- Pre-maximum spectroscopic diversity of hydrogen-poor superluminous supernovae
- ZTF-observed late-time signals of pre-ZTF transients