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首页> 外文期刊>The Astrophysical journal >TEMPORAL DECONVOLUTION STUDY OF LONG AND SHORT GAMMA-RAY BURST LIGHT CURVES
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TEMPORAL DECONVOLUTION STUDY OF LONG AND SHORT GAMMA-RAY BURST LIGHT CURVES

机译:长短伽马射线爆光曲线的时间反卷积研究

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The light curves of gamma-ray bursts (GRBs) are believed to result from internal shocks reflecting the activity of the GRB central engine. Their temporal deconvolution can reveal potential differences in the properties of the central engines in the two populations of GRBs which are believed to originate from the deaths of massive stars (long) and from mergers of compact objects (short). We present here the results of the temporal analysis of 42 GRBs detected with the Gamma-ray Burst Monitor onboard the Fermi Gamma-ray Space Telescope. We deconvolved the profiles into pulses, which we fit with lognormal functions. The distributions of the pulse shape parameters and intervals between neighboring pulses are distinct for both burst types and also fit with lognormal functions. We have studied the evolution of these parameters in different energy bands and found that they differ between long and short bursts. We discuss the implications of the differences in the temporal properties of long and short bursts within the framework of the internal shock model for GRB prompt emission.
机译:伽马射线暴(GRB)的光曲线被认为是由内部震动产生的,反映了GRB中央引擎的活动。它们的时间反褶积可以揭示两个GRB种群的中央引擎特性的潜在差异,据信这是由于大质量恒星的死亡(长)和紧凑物体的合并(短)引起的。我们在此介绍费米伽马射线太空望远镜上用伽马射线爆破监测仪检测到的42个GRB的时间分析结果。我们将轮廓解卷积为脉冲,以适合对数正态函数。对于两种脉冲类型,脉冲形状参数的分布和相邻脉冲之间的间隔是不同的,并且也符合对数正态函数。我们研究了这些参数在不同能带中的演变,发现它们在长脉冲和短脉冲之间是不同的。我们讨论了GRB瞬发内部冲击模型框架内长短脉冲的时间特性差异的含义。
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