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August 11, 2025The Astrophysical Journal Letters30 citationsOpen Access

EP 250108a/SN 2025kg: Observations of the Most Nearby Broad-line Type Ic Supernova Following an Einstein Probe Fast X-Ray Transient

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JRJ. RastinejadALA. J. LevanPJP. G. Jonker

Key Points

  • SN 2025kg's optical spectra indicate it is a broad-lined Type Ic supernova, showing significant features from fast X-ray transients.
  • Its light curve shows a 56 Ni mass of 0.2–0.6 M ⊙ and expansion velocities comparable to past known GRB-SNe.
  • Observational data included JWST/NIRSpec spectroscopy, revealing weak absorption from He I and broad emission features.
  • Findings suggest low-luminosity jets from collapsars are more common than previously believed, potentially affecting Type Ic-BL SNe understanding.

Abstract

Abstract With a small sample of fast X-ray transients (FXTs) with multiwavelength counterparts discovered to date, their progenitors and connections to γ -ray bursts (GRBs) and supernovae (SNe) remain ambiguous. Here, we present photometric and spectroscopic observations of SN 2025kg, the SN counterpart to the FXT EP 250108a. At z = 0.17641, this is the closest known SN discovered following an Einstein Probe (EP) FXT. We show that SN 2025kg’s optical spectra reveal the hallmark features of a broad-lined Type Ic SN. Its light-curve evolution and expansion velocities are comparable to those of GRB-SNe, including SN 1998bw, and two past FXT-SNe. We present JWST/NIRSpec spectroscopy taken around SN 2025kg’s maximum light, and find weak absorption due to He I 1.0830 μ m and 2.0581 μ m and a broad, unidentified emission feature at ∼4–4.5 μ m. Further, we observe broadened H α in optical data at 42.5 days that is not detected at other epochs, indicating interaction with H-rich material. From its light curve, we derive a 56 Ni mass of 0.2–0.6 M ⊙ . Together with our companion Letter, our broadband data are consistent with a trapped or low-energy (≲10 51 erg) jet-driven explosion from a collapsar with a zero-age main-sequence mass of 15–30 M ⊙ . Finally, we show that the sample of EP FXT-SNe supports past estimates that low-luminosity jets seen through FXTs are more common than successful (GRB) jets, and that similar FXT-like signatures are likely present in at least a few percent of the brightest Type Ic-BL SNe.

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Cite This Study

Rastinejad et al. (2025) studied this question.

synapsesocial.com/papers/68a35ee30a429f797332789chttps://doi.org/10.3847/2041-8213/ade7f9
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