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首页> 外文期刊>The Astrophysical journal >The Origin of the Optical Flashes: The Case Study of GRB 080319B and GRB 130427A
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The Origin of the Optical Flashes: The Case Study of GRB 080319B and GRB 130427A

机译:闪光灯的起源:以GRB 080319B和GRB 130427A为例

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Correlations between optical flashes and gamma-ray emissions in gamma-ray bursts (GRBs) have been searched in order to clarify the question of whether these emissions occur at internal and/or external shocks. Among the most powerful GRBs ever recorded are GRB 080319B and GRB 130427A, which at early phases presented bright optical flashes possibly correlated with γ-ray components. Additionally, both bursts were fortuitously located within the field of view of the TeV γ-ray Milagro and HAWC observatories, and although no statistically significant excess of counts were collected, upper limits were placed on the GeV–TeV emission. Considering the synchrotron self-Compton emission from internal shocks and requiring the GeV–TeV upper limits, we found that the optical flashes and the γ-ray components are produced by different electron populations. Analyzing the optical flashes together with the multiwavelength afterglow observation, we found that these flashes can be interpreted in the framework of the synchrotron reverse shock model when outflows have arbitrary magnetizations.
机译:为了阐明在内部和/或外部冲击下是否发生这些发射的问题,已经研究了伽马射线暴(GRB)中的闪光与伽马射线发射之间的相关性。 GRB 080319B和GRB 130427A是有史以来最强大的GRB,它们在早期阶段就呈现出可能与γ射线成分相关的明亮的闪光。另外,两个脉冲都偶然地位于TeVγ射线Milagro和HAWC天文台的视场内,尽管没有收集到统计上显着的计数超标,但对GeV–TeV的发射设定了上限。考虑到内部冲击产生的同步加速器自康普顿辐射,并要求GeV–TeV上限,我们发现闪光和γ射线分量是由不同的电子种群产生的。通过分析光学闪光和多波长余辉观察,我们发现当流出物具有任意磁化强度时,这些闪光可以在同步加速器反激模型的框架中解释。

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