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Unveil a Peculiar Light-curve Pattern of Magnetar Burst with GECAM Observations of SGR J1935+2154

作者:Yue Wang, Chen-Wei Wang, S. L. Xiong, Shuo Xiao, Yan-Qiu Zhang, Sheng-Lun Xie, Lin Lın, Yuan-Pei Yang, Haoxuan Guo, Ce Cai, Yue Huang, Cheng-Kui Li, Bing Li, Xiao‐Bo Li, Jia-Cong Liu, Xiang Ma, L. M. Song, Wen-Jun Tan, Ping Wang, W. C. Xue, Shu-Xu Yi, Yun-Wei Yu, Zheng-Hang Yu, Jinpeng Zhang, Peng Zhang, Shuang‐Nan Zhang, Wen-Long Zhang, Zhen Zhang, Xiao-Yun Zhao, Chao Zheng, S. J. Zheng · 发表于:The Astrophysical Journal · 年份:2025 · DOI:10.3847/1538-4357/ae0cbe · 被引用次数:5 · 研究领域:Pulsars and Gravitational Waves Research、Gamma-ray bursts and supernovae、Astrophysical Phenomena and Observations

Abstract A magnetar X-ray burst (MXB) is usually composed of a single pulse or multiple pulses with rapid rise and brief duration mostly observed in the hard X-ray (soft gamma-ray) band. Previous work studied the temporal behavior of some magnetar bursts and employed the fast rise exponential decay (FRED) model to fit pulses of MXB. However, whether there is another kind of pulse shape has not been explored. In this study, we systematically examined the light curve of MXBs from SGR J1935+2154 detected by the Gravitational Wave High-energy Electromagnetic Counterpart All-sky Monitor between 2021 and 2022. We find that there are different light-curve morphologies. Especially, we discover a peculiar and new pattern, exponential rise and cutoff decay (ERCOD), which is significantly different from FRED and could be well described by a mathematical function we proposed. We find that MXBs with ERCOD shape are generally longer in duration, brighter in the peak flux, and harder in spectrum than those with FRED. We note that the ERCOD shape is not unique to SGR J1935+2154 but also present in other magnetars. This new light-curve pattern may imply a special burst and radiation mechanism of magnetar.