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March 5, 2026The Astrophysical Journal0 citationsOpen Access

SN 2021aaev: A Hydrogen-rich Superluminous Supernova with Early Flash and Long-lived Circumstellar Interaction in an Unusual Host Environment

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Y胡Yang 阳 Hu 胡RLR. LunnanPPP. J. Pessi

Key Points

  • The aim is to analyze the characteristics of SN 2021aaev, particularly its interactions with the surrounding environment.
  • Conducted photometric and spectroscopic observations of SN 2021aaev.
  • Measured the peak absolute magnitude and observed prepeak spectra.
  • Analyzed narrow Balmer lines and their evolution post-peak.
  • SN 2021aaev exhibited persistent narrow Balmer lines for over 100 days.
  • The supernova reached a peak absolute magnitude of −21.46 and showed unique flash-ionization features.
  • The radiated energy was approximately 1.41 × 10^51 erg, suggesting a low-mass ejecta interacting with a massive circumstellar medium.

Abstract

Abstract We present photometric and spectroscopic observations of SN 2021aaev, a hydrogen-rich, superluminous supernova with persistent (at least ∼100 days) narrow Balmer lines (SLSN-IIn) at redshift z = 0.1557. SN 2021aaev rose over 28.1 ± 1.0 rest-frame days after explosion, reaching a peak absolute magnitude of −21.46 ± 0.01 in the ATLAS o band. The prepeak spectra resemble those of typical Type IIn SNe with flash-ionization features arising from the interaction with a dense, confined circumstellar medium (CSM), albeit the flash timescale is longer than usual (>20 days). Postpeak, the narrow emission lines evolve slowly, and the absence of ejecta features indicates strong deceleration by the CSM. The total radiated energy (about 1.41 × 10 51 erg) is possibly explained by a low-mass (1–2 M ⊙ ) ejecta ploughing into a massive (9–19 M ⊙ ), extended (outer radius >1 × 10 16 cm) H-rich CSM, or alternatively by magnetar-powered models. Interestingly, the host environment consists of a spiral galaxy with a red substructure in the southeastern part, and the SN’s exact location coincides with this quiescent red region (star formation rate = 0.0 2 − 0.02 + 0.13 M ⊙ yr −1 ). Given the atypical environment and the obscuring effect of the massive CSM, a thermonuclear (Type Ia-CSM) origin cannot be ruled out. Altogether, SN 2021aaev is a compelling case to study the diversity of SLSN-IIn features and their host environments.

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Cite This Study

胡 et al. (2026) studied this question.

synapsesocial.com/papers/69a91d55d6127c7a504c007ahttps://doi.org/10.3847/1538-4357/ae374c
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1SN 2019cqc: A Hydrogen-rich Superluminous Supernova Showing Electron-scattering Signatures2026
  2. 2SN 2024afav: A Superluminous Supernova with Multiple Light-curve Bumps and Spectroscopic Signatures of Circumstellar Interaction2026
  3. 3SN 2020zbf: A fast-rising hydrogen-poor superluminous supernova with strong carbon lines2024 · 1 citations
  4. 4The story of SN 2021aatd -- a peculiar 1987A-like supernova with an early-phase luminosity excess2024
  5. 5Massive stars exploding in a He-rich circumstellar medium. XII. SN 2024acyl: A fast, linearly declining Type Ibn supernova with early flash-ionisation features2026