English

Optical Observations and Modeling of the Superluminous Supernova 2018lfe

High Energy Astrophysical Phenomena 2022-06-01 v1 Solar and Stellar Astrophysics High Energy Physics - Phenomenology

Abstract

We present optical imaging and spectroscopy of SN\,2018lfe, which we classify as a Type I superluminous supernova (SLSN-I) at a redshift of z=0.3501z = 0.3501 with a peak absolute magnitude of Mr22.1M_r\approx -22.1 mag, one of the brightest SLSNe discovered. SN\,2018lfe was identified for follow-up using our FLEET machine learning pipeline. Both the light curve and the spectra of SN\,2018lfe are consistent with the broad population of SLSNe. We fit the light curve with a magnetar central engine model and find an ejecta mass of Mej3.8M_{\rm ej}\approx 3.8 M_\odot, a magnetar spin period of P2.9P\approx 2.9 ms and a magnetic field strength of B2.8×1014B_{\perp}\approx 2.8\times 10^{14} G. The magnetic field strength is near the top of the distribution for SLSNe, while the spin period and ejecta mass are near the median values of the distribution for SLSNe. From late-time imaging and spectroscopy we find that the host galaxy of SN\,2018lfe has an absolute magnitude of Mr17.85M_r\approx -17.85, (LB0.029L_B \approx 0.029 LL^*), and an inferred metallicity of Z0.3Z\approx 0.3 Z_\odot, and star formation rate of 0.8\approx 0.8 M_\odot yr1^{-1}.

Keywords

Cite

@article{arxiv.2109.06970,
  title  = {Optical Observations and Modeling of the Superluminous Supernova 2018lfe},
  author = {Yao Yin and Sebastian Gomez and Edo Berger and Griffin Hosseinzadeh and Matt Nicholl and Peter K. Blanchard},
  journal= {arXiv preprint arXiv:2109.06970},
  year   = {2022}
}