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Microphysics and dynamics of the gamma-ray burst 121024A

机译:伽马射线暴121024A的微观物理学和动力学

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Aims. The aim of the study is to constrain the physics of gamma-ray bursts (GRBs) by analysing the multi-wavelength afterglow data set of GRB 121024A that covers the full range from radio to X-rays. Methods. Using multi-epoch broad-band observations of the GRB 121024A afterglow, we measured the three characteristic break frequencies of the synchrotron spectrum. We used six epochs of combined XRT and GROND data to constrain the temporal slopes, the dust extinction, the X-ray absorption, and the spectral slope with high accuracy. Two more epochs of combined data from XRT, GROND, APEX, CARMA, and EVLA were used to set constraints on the break frequencies and therefore on the micro-physical and dynamical parameters. Results. The XRT and GROND light curves show a simultaneous and achromatic break at around 49 ks. As a result, the crossing of the synchrotron cooling break is no suitable explanation for the break in the light curve. The multi-wavelength data allow us to test two plausible scenarios explaining the break: a jet break, and the end of energy injection. The jet-break scenario requires a hard electron spectrum, a very low cooling break frequency, and a non-spreading jet. The energy injection avoids these problems, but requires ? _(e) & 1 ( k = 2 ), spherical outflow, and ? _(B) & 10~(-9) . Conclusions. In light of the extreme microphysical parameters required by the energy-injection model, we favour a jet-break scenario where ν _(m) & ν _(sa) to explain the observations. This scenario gives physically meaningful microphysical parameters, and it also naturally explains the reported detection of linear and circular polarisation.
机译:目的该研究的目的是通过分析GRB 121024A的多波长余辉数据集(涵盖从无线电到X射线的整个范围)来限制伽马射线爆发(GRB)的物理学。方法。使用GRB 121024A余辉的多历时宽带观测,我们测量了同步加速器频谱的三个特征中断频率。我们使用六个时期的XRT和GROND组合数据来高精度地限制时间斜率,尘埃消光,X射线吸收和光谱斜率。来自XRT,GROND,APEX,CARMA和EVLA的组合数据的另外两个纪元用于设置对中断频率的约束,因此对微物理和动力学参数也有约束。结果。 XRT和GROND光曲线在49 ks附近显示同时消色差。结果,同步加速器冷却中断的交叉对于光曲线的中断没有合适的解释。多波长数据使我们能够测试两个解释中断的合理情况:喷射中断和能量注入结束。射流破裂的情况需要硬电子光谱,极低的冷却破裂频率和不扩散的射流。能量注入避免了这些问题,但是需要? _(e)& 1(k = 2),球形流出,? _(B)& 10〜(-9)。结论。鉴于能量注入模型所要求的极端微物理参数,我们赞成ν_(m)≤n的射流破裂场景。 ν_(sa)解释观察结果。这种情况提供了物理上有意义的微物理参数,并且自然也解释了报告的线性和圆极化检测。

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