SN 2018bsz: a Type I superluminous supernova with aspherical circumstellar material
M. Pursiainen, G. Leloudas, E. Paraskeva, A. Cikota, J. P. Anderson,, C. R. Angus, S. Brennan, M. Bulla, E. Camacho-I\~niguez, P. Charalampopoulos,, T.-W. Chen, M. Delgado Manche\~no, M. Fraser, C. Frohmaier, L. Galbany, C. P., Guti\'errez, M. Gromadzki, C. Inserra, J. Maund

TL;DR
SN 2018bsz, a Type I superluminous supernova, exhibits unique multi-component hydrogen lines and significant asymmetry, likely caused by highly aspherical circumstellar material, providing new insights into the diversity of SLSNe-I.
Contribution
This study presents detailed spectroscopic and spectropolarimetric analysis of SN 2018bsz, revealing unprecedented multi-component hydrogen lines and strong asymmetry, suggesting a highly aspherical circumstellar environment.
Findings
Multi-component Hα line with distinct velocity components
High continuum polarization indicating asymmetry
CSM located within 87-430 AU from the explosion
Abstract
We present a spectroscopic analysis of Type I superluminous supernova (SLSN-I), SN 2018bsz. While it closely resembles SLSNe-I, the multi-component H line appearing at d post-maximum is the most atypical. The H is characterised by two emission components, one at km/s and a second at km/s, with a third, near-zero velocity component appearing after a delay. The blue and central components can be described by Gaussian profiles of intermediate width, but the red component is significantly broader and Lorentzian. The blue component evolves towards lower velocity before fading at d post-peak, concurrently with a light curve break. Multi-component profiles are observed in other hydrogen lines including Pa, and in lines of Ca II and He I. Spectropolarimetry obtained before (10.2 d) and after (38.4 d) the appearance of the H lines show a…
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