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August 14, 2025The Astrophysical Journal Letters13 citationsOpen Access

Spectral Hardening Reveals Afterglow Emergence in Long-duration Fast X-Ray Transients: A Case Study of GRB 250404A/EP250404a

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YYYi-Han Iris YinYFY. FangBZBin‐Bin Zhang

Key Points

  • Spectral hardening indicates the emergence of afterglow in gamma-ray bursts, marking a distinct phase transition.
  • Continuous X-ray emission of GRB 250404A showed a tail lasting approximately 300 seconds, more than three times longer than gamma-ray duration.
  • Modeling incorporated forward- and reverse-shock components to confirm the afterglow emergence underlying spectral changes.
  • Findings imply a new method for identifying unique gamma-ray bursts among fast x-ray transients without gamma-ray counterpart.

Abstract

Abstract The prompt emission and afterglow phases of gamma-ray bursts (GRBs) have been extensively studied, yet the transition between these two phases remains inadequately characterized due to limited multiwavelength observational coverage. Among the recent growing samples of fast X-ray transients observed by Einstein Probe (EP), a subgroup of GRBs are captured with long-duration X-ray emission, potentially containing featured evolution from prompt emission to the afterglow phase. In this Letter, we present a detailed analysis of GRB 250404A/EP250404a, a bright, fast X-ray transient detected simultaneously by EP and the Fermi Gamma-ray Burst Monitor in X-rays and gamma rays. Its continuous X-ray emission reveals a long-duration tail, accompanied by distinct spectral evolution manifested by the spectral index α X with an initial softening, followed by an evident hardening, eventually reaching a plateau at the value of ∼–2. Early optical and near-infrared observations enable broadband modeling with forward- and reverse-shock components, confirming that the X-ray hardening signals the emergence of the external-shock afterglow. From this spectral hardening, we infer that the prompt phase in soft X-rays lasted ∼300 s, which is more than 3 times longer than the gamma-ray T 90 . This well-tracked soft–hard–flat spectral pattern provides a clear indication of afterglow emergence from the fading prompt emission and offers a practical criterion for identifying a distinct population of GRBs among fast X-ray transients, even when the detection of the gamma-ray counterpart or obvious temporal break is absent.

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Cite This Study

Yin et al. (2025) studied this question.

synapsesocial.com/papers/68af56faad7bf08b1eadd24ahttps://doi.org/10.3847/2041-8213/adf552
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