Diverse Morphologies of GRB X-Ray Plateaus within a Common Magnetar Framework
统一磁星框架下伽马射线暴X射线平台的多样形态
The origin of the X-ray plateau phase in gamma-ray bursts (GRBs) remains an open problem. In particular, it is unclear whether GRBs with different temporal morphologies (i.e., with a rising, flat, or decaying plateau) arise from a common underlying mechanism. Although magnetar energy injection is a leading explanation, previous studies have primarily inferred magnetar properties on a burst-by-burst basis and have not tested the model at the population level. Here we perform the first hierarchical population inference of magnetar parameters for a uniform sample of 185 long GRBs with X-ray plateaus within a conditional Poisson point-process framework. It is found that the observed plateau population is well reproduced by physically plausible magnetar populations. The inferred parameter distributions show no strong statistical separation among subclasses with different plateau morphologies. Nevertheless, all subclasses show a substantial intrinsic luminosity scatter, $σ_{L,\rm int}\sim0.5$--1.0 dex, whereas the intrinsic duration scatter remains considerably smaller. The results provide a population-level test of the magnetar interpretation of GRB X-ray plateaus, showing that the observed diversity of plateau morphologies does not require distinct magnetar populations.
展开 ▾首次在种群层面自洽纳入选择效应,验证了不同X射线平台形态无需不同的磁星中心引擎;所有子类均呈现较大的内禀光度弥散(~0.5–1.0 dex),而持续时间弥散较小。
过去对GRB X射线平台的研究主要基于逐例拟合磁星参数(Lyons+ 2010、Rowlinson+ 2014、Lü+ 2015、Deng+ 2026),Dong+ 2026提供了统一的平台形态分类样本。本文在此基础上,采用条件泊松点过程分层贝叶斯框架(Loredo+ 1998a、Mandel+ 2019)首次进行磁星参数种群推断,发现上升、平坦和衰减平台子类的参数分布无显著统计分离,支持平台多样性源于同一磁星种群。未来可结合外部激波模型(Dereli-Bégué+ 2022)或观测选择效应(Yamazaki 2009)进一步探究,并需更大样本及显式形态依赖模型检验特殊平台形态。
预印本 2026-07-25 · 收录 2026-07-28