Nondetection of Neutrinos from the BOAT: Improved Constraints on the Parameters of GRB 221009A
未探测到来自 BOAT 的中微子:对 GRB 221009A 参数的改进约束
The IceCube neutrino observatory detects the diffuse astrophysical neutrino background with high significance, but the contribution of different classes of sources is not established. Because of their nonthermal spectrum, gamma-ray bursts (GRBs) are prime particle acceleration sites and one of the candidate classes for significant neutrino production. Exhaustive searches, based on stacking analysis of GRBs, however, could not establish the link between neutrinos and GRBs. GRB 221009A had the highest time integrated gamma-ray flux of any detected GRB so far. The total fluence exceeds the sum of all Fermi Gamma-ray Burst Monitor─detected GRBs by a factor of 2. Because it happened relatively nearby, it is one of the most favorable events for neutrino production from GRBs, yet no neutrinos were detected. We calculate neutrino fluxes for this GRB in the TeV─PeV range using the most accurate time-resolved spectral data covering the brightest intervals. We place limits on the physical parameters (Lorentz factor, baryon loading, or emission radius) of the burst that are better by a factor of 2 compared to previous limits. The neutrino nondetection indicates a bulk Lorentz factor greater than 500 and possibly even 800, consistent with other observations.
展开 ▾首次将 GRB 221009A 的逐秒谱(含 PPU 校正)与数值中微子积分及 IceCube 上限结合,排除大范围内激波参数空间;非探测要求体洛伦兹因子 Γ≳500,较小辐射半径时可达 Γ≳800。
既往研究已把 GRB 内激波中的 pγ 过程视为 TeV-PeV 中微子候选(Waxman & Bahcall 1997、Murase 2008),但 IceCube 对 GRB 群体的叠加搜寻长期未能确立关联(Aartsen et al. 2017b)。对 GRB 221009A 的早期限制多基于时间积分谱和粗略谱形(Murase et al. 2022);本文首次将 Lesage et al. 2023 给出的脉冲堆积校正后逐秒谱与数值积分的中微子能谱结合,并用 Abbasi et al. 2023b 的 IceCube 上限给出改进约束。结果表明非探测要求 Γ≳500、在较小辐射半径时甚至 ≳800,与 TeV 余辉观测一致;相比叠加分析,单暴约束减少了对整个群体 Lorentz 因子和重子加载分布假设的依赖。未来更灵敏的中微子望远镜与快速时间分辨谱、TeV 多信使观测相结合,将进一步区分内激波与磁重联等模型,并更精确刻画喷流重子加载与辐射区位置。
预印本 2024-08-29 · 接收 2026-05-19 · 刊出 2026-07-27 · 收录 2026-08-20