Record-breaking polarization from the interacting superluminous supernova 2017hcc

Author:

Mauerhan Jon C1ORCID,Smith Nathan2ORCID,Williams G Grant23,Smith Paul S2,Filippenko Alexei V4,Bilinski Christopher2ORCID,Zheng WeiKang45,Brink Thomas G46,Hoffman Jennifer L7ORCID,Leonard Douglas C8,Milne Peter2,Jeffers Benjamin4,Modak Shaunak49,Stegman Samantha410,Zhang Keto D411ORCID

Affiliation:

1. The Aerospace Corporation , 2310 East El Segundo Boulevard, El Segundo, CA 90245 , USA

2. Steward Observatory, University of Arizona , 933 North Cherry Avenue, Tucson, AZ 85721 , USA

3. MMT Observatory , Tucson, AZ 85721-0065 , USA

4. Department of Astronomy, University of California , Berkeley, CA 94720-3411 , USA

5. Eustace Specialist in Astronomy , USA

6. Wood Specialist in Astronomy , USA

7. Department of Physics and Astronomy, University of Denver , 2112 East Wesley Avenue, Denver, CO 80208 , USA

8. Department of Astronomy, San Diego State University , PA-210, 5500 Campanile Drive, San Diego, CA 92182-1221 , USA

9. Department of Astrophysical Sciences, Princeton University , 4 Ivy Lane, Princeton, NJ 08544 , USA

10. Department of Chemistry, University of Wisconsin , Madison, WI 53706 , USA

11. IPAC , Mail Code 100-22 Caltech, 1200 East California Boulevard, Pasadena, CA 91125 , USA

Abstract

ABSTRACT We present multi-epoch spectropolarimetry of Type IIn supernova SN2017hcc, 16–391 d after explosion. Continuum polarization up to 6 per cent is observed during the first epoch, making SN 2017hcc the most intrinsically polarized SN ever reported at visible wavelengths. During the first 29 d, when the polarization is strongest, the continuum polarization exhibits wavelength dependence that rises toward the blue, then becomes wavelength independent by day 45. The polarization drops rapidly during the first month, even as the flux is still climbing to peak brightness. None the less, unusually high polarization is maintained until day 68, at which point the polarization declines to levels comparable to those of previous well-studied SNe IIn. Only minor changes in position angle (PA) are measured throughout the evolution. The blue slope of the polarized continuum and polarized line emission during the first month suggests that an aspherical distribution of dust grains in pre-shock circumstellar material (CSM) is echoing the SN IIn spectrum and strongly influencing the polarization, while the subsequent decline during the wavelength-independent phase appears consistent with electron scattering near the SN/CSM interface. The persistence of the PA between these two phases suggests that the pre-existing CSM responsible for the dust scattering at early times is part of the same geometric structure as the electron-scattering region that dominates the polarization at later times. SN 2017hcc appears to be yet another, but more extreme, case of aspherical yet well-ordered CSM in Type IIn SNe, possibly resulting from pre-SN mass-loss shaped by a binary progenitor system.

Funder

NSF

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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