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首页> 外文期刊>The Astrophysical journal >THE MAGNETIZATION DEGREE OF THE OUTFLOW POWERING THE HIGHLY POLARIZED REVERSE-SHOCK EMISSION OF GRB 120308A
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THE MAGNETIZATION DEGREE OF THE OUTFLOW POWERING THE HIGHLY POLARIZED REVERSE-SHOCK EMISSION OF GRB 120308A

机译:GRB 120308A高极化反向冲击发射的出流磁化强度

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摘要

GRB 120308A, a long duration γ-ray burst (GRB) detected by Swift, was distinguished by a highly polarized early optical afterglow emission that strongly suggests an ordered magnetic field component in the emitting region. In this work, we model the optical and X-ray emission in the reverse and forward shock scenario and show that the strength of the magnetic field in the reverse-shock region is ~10 times stronger than that in the forward shock region. Consequently, the outflow powering the highly polarized reverse-shock optical emission was mildly magnetized at a degree of σ ~ a few percent. Considering the plausible magnetic energy dissipation in both the acceleration and prompt emission phases of the GRB outflow, the afterglow data of GRB 120308A provides us with compelling evidence that, at least for some GRBs, a nonignorable fraction of the energy was released in the form of Poynting flux, confirming the finding first made in the reverse-forward shock emission modeling of the optical afterglow of GRB 990123 by Fan et?al. in 2002 and Zhang et?al. in 2003.
机译:Swift探测到的长时间伽玛射线暴(GRB)GRB 120308A的特征是高度偏振的早期光学余辉发射,强烈暗示了发射区域中的有序磁场分量。在这项工作中,我们对反向冲击和正向冲击场景中的光学和X射线发射进行了建模,结果表明,反向冲击区域的磁场强度比正向冲击区域的磁场强度高约10倍。因此,为高偏振反向冲击光发射提供动力的流出物以σ〜百分之几的程度被轻度磁化。考虑到GRB流出的加速阶段和即时发射阶段中可能存在的磁能耗散,GRB 120308A的余辉数据为我们提供了令人信服的证据,至少对于某些GRB来说,不可忽略的一部分能量以下列形式释放: Poynting通量,证实了Fan等人在GRB 990123的光学余辉的反向正向激射发射建模中首次发现的发现。在2002年和Zhang等人。在2003年。

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