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EP241217a: a likely type II GRB with an achromatic bump at z = 4.59

  • Hao Zhou*
  • , Jia Ren
  • , Chen-Wei Wang
  • , Xing Liu
  • , Bin-Yang Liu
  • , Andrew J. Levan
  • , Jillian C. Rastinejad
  • , Jin-Jun Geng
  • , Hao Wang
  • , Peter K. Blanchard
  • , Wen-fai Fong
  • , Benjamin P. Gompertz
  • , Daniele B. Malesani
  • , Charles D. Kilpatrick
  • , Gavin P. Lamb
  • , Brian D. Metzger
  • , Matt Nicholl
  • , Nial R. Tanvir
  • , Yun Wang
  • , Yu Rong
  • Run-Duo Liang, Zhi-Xing Ling, Dong Xu, Zhi-Ping Jin, Da-Ming Wei
*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

EP241217a is an X-ray transient detected by the Einstein Probe lasting for about 100 s and without accompanying γ-ray detection. The optical spectroscopy reveals the redshift of EP241217a is 4.59. By combining the γ-ray upper limit provided by GECAM-C, there is a considerable possibility that EP241217a is a typical type II gamma-ray burst, but it is fainter than the detection threshold of any available γ-ray monitors (i.e., Eγ,iso ≲ 1053 erg). The X-ray light curve exhibits a plateau lasting for ∼5 × 104 s. However, the joint analysis with optical data suggests the presence of an achromatic bump peaking at ∼3 × 104 s after the trigger, indicating the actual duration of the X-ray plateau may be significantly shorter than it appears. To interpret the achromatic bump, we adopt the scenario of a mildly relativistic jet coasting in a wind-like medium and encountering a rapid density enhancement of the circumburst medium, which is likely induced by the interaction of the progenitor’s stellar wind and the interstellar medium. However, this model cannot fully explain observed data, and some issues do exist, e.g., the observed spectrum is harder than the model prediction. Consequently, we conclude that the scenario of a mildly relativistic jet coasting in the wind-like medium cannot explain all observed features of EP241217a. In addition, some alternative models commonly invoked to explain X-ray plateaus are discussed, but there are more or less issues when they were applied to EP241217a. Therefore, further theoretical modeling is encouraged to explore the origin of EP241217a.
Original languageEnglish
Article number163
Number of pages16
JournalThe Astrophysical Journal
Volume998
Issue number1
Early online date09 Feb 2026
DOIs
Publication statusPublished - 10 Feb 2026

Keywords

  • X-ray bursts
  • achromatic bump

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