Evidence of self-organized criticality in the prompt emission of a bright gamma-ray burst
明亮伽马射线暴瞬时辐射中的自组织临界性证据
Gamma-ray bursts (GRBs) are the most energetic explosive events in the Universe, yet the physical mechanism of their prompt emission remains a mystery. Especially, it is unclear whether the energy dissipation mechanism in the GRB jet is dominated by kinetic energy or magnetic energy. Here, we studied the pulses in the prompt emission of the second brightest GRB to date, GRB 230307A, which was accurately measured by the Gravitational wave high-energy electromagnetic counterpart all-sky monitor (GECAM), with focus on the cumulative distributions of peak counts and duration of pulses as well as the waiting time between pulses. We find that these cumulative distributions show scale-invariant behavior, well consistent with the prediction of the self-organized criticality (SOC) theory. This is the first robust evidence of an SOC feature in the prompt emission of a single GRB. Moreover, the statistical properties of pulses in the prompt emission of GRB 230307A are very similar to those of solar flares. Our findings suggest that the prompt emission of GRB is powered by the dissipation of magnetic energy in the ultra-relativistic jet, supporting the Poynting-flux-dominated prompt models.
展开 ▾首次在单个 GRB(GRB 230307A)内部识别出瞬时辐射的 SOC 幂律特征,避免跨源合并样本的选择偏差;脉冲等待时间、持续时间、峰值计数的幂律斜率与三维 SOC 预言一致,支持 Poynting 流主导/磁重联耗散图像。
过去对 GRB 脉冲的 SOC 统计多采用跨源合并样本,如Wang & Dai 2013在 GRB X 射线耀斑、Li+ 2023在短暴瞬时辐射中发现类似幂律行为,但易受选择偏差和系统误差影响。本研究利用 GECAM 对极亮 GRB 230307A 的抗饱和多能段光变,首次在单个 GRB 内提取几十至上百个脉冲,发现等待时间、持续时间和峰值计数累积分布均呈幂律,斜率与三维 SOC 理论预测一致,并与太阳耀斑统计相似。该结果把磁重联耗散图像(如Zhang & Yan 2011的 ICMART 模型)落实到单源脉冲统计层面。未来对更多亮 GRB 进行高时间分辨观测并联合偏振、PDS、光谱约束,有望系统检验磁主导喷流的能量耗散物理。
预印本 2026-08-18 · 收录 2026-08-20