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首页> 外文期刊>Astronomy and astrophysics >Individual power density spectra of Swift gamma-ray bursts
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Individual power density spectra of Swift gamma-ray bursts

机译:迅速伽马射线爆发的单个功率密度谱

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摘要

Context. Timing analysis can be a powerful tool with which to shed light on the still obscure emission physics and geometry of the prompt emission of gamma - ray bursts (GRBs). Fourier power density spectra (PDS) characterise time series as stochastic processes and can be used to search for coherent pulsations and, more in general, to investigate the dominant variability timescales in astrophysical sources. Because of the limited duration and of the statistical properties involved, modelling the PDS of individual GRBs is challenging, and only average PDS of large samples have been discussed in the literature thus far. Aims. We aim at characterising the individual PDS of GRBs to describe their variability in terms of a stochastic process, to explore their variety, and to carry out for the first time a systematic search for periodic signals and for a link between PDS properties and other GRB observables. Methods. We present a Bayesian procedure that uses a Markov chain Monte Carlo technique and apply it to study the individual PDS of 215 bright long GRBs detected with the Swift Burst Alert Telescope in the 15 ? 150 keV band from January 2005 to May 2015. The PDS are modelled with a power-law either with or without a break. Results. Two classes of GRBs emerge: with or without a unique dominant timescale. A comparison with active galactic nuclei (AGNs) reveals similar distributions of PDS slopes. Unexpectedly, GRBs with subsecond-dominant timescales and duration longer than a few tens of seconds in the source frame appear to be either very rare or altogether absent. Three GRBs are found with possible evidence for a periodic signal at 3.0 – 3.2 σ (Gaussian) significance, corresponding to a multi-trial chance probability of ~ 1%. Thus, we found no compelling evidence for periodic signal in GRBs. Conclusions. The analogy between the PDS of GRBs and of AGNs could tentatively indicate similar stochastic processes that rule BH accretion across different BH mass scales and objects. In addition, we find evidence that short dominant timescales and duration are not completely independent of each other, in contrast with commonly accepted paradigms.
机译:上下文。时序分析可以成为一种强大的工具,借助它可以了解仍不清楚的发射物理特性和及时发出伽马射线暴(GRB)的几何形状。傅立叶功率密度谱(PDS)将时间序列表征为随机过程,可用于搜索相干脉动,并且更一般而言,可用于研究天体物理源中的主要可变时间尺度。由于持续时间有限和涉及的统计特性,对单个GRB的PDS进行建模具有挑战性,到目前为止,文献中仅讨论了大样本的平均PDS。目的我们旨在表征GRB的各个PDS,以随机过程的形式描述其可变性,探索其多样性,并首次对周期信号进行系统性搜索,并首次进行PDS属性与其他GRB可观测指标之间的联系。方法。我们提出了一种使用马尔可夫链蒙特卡洛技术的贝叶斯程序,并将其用于研究在15秒内使用Swift Burst Alert Telescope检测到的215个明亮长GRB的单个PDS。从2005年1月到2015年5月为150 keV频段。PDS的模型以幂定律为基础,有或无间断。结果。出现了两类GRB:有或没有唯一的主导时间标度。与活动银河核(AGNs)的比较揭示了PDS斜率的相似分布。出乎意料的是,在源帧中具有次秒级占主导地位且持续时间长于几十秒的GRB似乎非常罕见或完全不存在。发现了三个GRB,它们具有在3.0 – 3.2σ(高斯)有效度下的周期性信号的可能证据,对应于〜1%的多次尝试机会。因此,我们没有发现令人信服的GRB中周期性信号的证据。结论。 GRBs和AGNs的PDS之间的类比可以初步表明类似的随机过程,它们在不同的BH质量规模和物体之间都支配着BH的积聚。此外,我们发现有证据表明,与普遍接受的范式相反,较短的主导时间尺度和持续时间并不完全相互独立。

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