Jiang Lu-Yao, Wang Yun, Wei Yu-Jia, Wei Da-Ming, Li Xiang, He Hao-Ning, Ren Jia, Shen Zhao-Qiang, Jin Zhi-Ping
Key Laboratory of Dark Matter and Space Astronomy, Purple Mountain Observatory, Chinese Academy of Sciences, Nanjing, 210023, China.
School of Astronomy and Space Science, University of Science and Technology of China, Hefei, 230026, China.
Nat Commun. 2025 Mar 18;16(1):2668. doi: 10.1038/s41467-025-57791-w.
Detection of spectral line in gamma-ray bursts (GRBs) is importance for studying GRB physics, as it provides insights into the composition and physical conditions of the GRB environment. However, progress in detecting X-ray or gamma-ray emission and absorption lines in GRB spectra has been relatively slow, only the narrow emission line feature of about 10 MeV found in GRB 221009A has exhibited a significance exceeding 5σ. Here, we report the probable evidence of a narrow emission feature at about 2.1 mega-electron volts (MeV) in the spectrum of GRB 221023A. The highest statistical significance of this feature is observed in the time interval between 8 and 30 seconds after Fermi Gamma-Ray Burst Monito trigger, with the chance probability value <2.56 × 10 (after accounting for the look-elsewhere effect), corresponding to a Gaussian-equivalent significance >4.20σ. We interpret this festure as being generated through the de-excitation of excited electrons in the relativistic hydrogen-like high-atomic-number ions entrained in the GRB jet.
探测伽马射线暴(GRBs)中的谱线对于研究伽马射线暴物理至关重要,因为它能让我们深入了解伽马射线暴环境的组成和物理条件。然而,在探测伽马射线暴光谱中的X射线或伽马射线发射线和吸收线方面进展相对缓慢,仅在GRB 221009A中发现的约10 MeV的窄发射线特征其显著性超过了5σ。在此,我们报告了GRB 221023A光谱中约2.1兆电子伏特(MeV)处存在窄发射特征的可能证据。在费米伽马射线暴监测器触发后的8到30秒时间间隔内观察到该特征的最高统计显著性,其偶然概率值<2.56×10(考虑到视见效应后),对应高斯等效显著性>4.20σ。我们将此特征解释为是由伽马射线暴喷流中夹带的相对论性类氢高原子序数离子中受激电子的去激发产生的。