论文标题

合并的X射线和光学分析,以探测高原排放的起源$γ$ ray爆发。

Combined X-ray and optical analysis to probe the origin of the plateau emission in $γ$-ray bursts afterglows

论文作者

Ronchini, Samuele, Stratta, Giulia, Rossi, Andrea, Kann, David Alexander, Oganesyan, Gor, Dall'Osso, Simone, Branchesi, Marica, De Cesare, Giovanni

论文摘要

大部分的伽马射线爆发(GRB)显示了X射线余辉发射期间的平稳阶段,其物理起源仍在争论中。在这项工作中,我们在高原阶段和之后定义了30个GRB的样本,并具有同时的X射线和光学数据。通过对X射线高原的时间分辨光谱分析,我们通过假设同步子光谱来测试未吸收的光学通量与通过X射线到光谱外推获得的光通量的一致性。将X射线与光学数据结合在一起,我们发现63%(19/30)GRB与单个同步加速器谱兼容,因此表明光学和X射线辐射均来自单个发射区域。对于这些GRB,我们得出了断裂频率的时间演变,并将其与几个模型预测的期望进行了比较。对于11/30 GRB,光发射高于从X射线中至少一个光曲线的一个时间箱中推断的值的预测范围。这些GRB可能无法用单个区域排放来解释,这表明有必要援引两个合作的过程,以解释X射线高原期间的宽带光谱行为。我们在调用不同场景的框架中讨论了我们的发现,以解释高原特征,包括从旋转的磁铁中注入能量和结构化射流的高纬度发射。

A large fraction of gamma-ray bursts (GRBs) shows a plateau phase during the X-ray afterglow emission, whose physical origin is still debated. In this work we define a sample of 30 GRBs with simultaneous X-ray and optical data during and after the plateau phase. Through a time-resolved spectral analysis of the X-ray plateaus, we test the consistency of the unabsorbed optical fluxes with those obtained via X-ray-to-optical spectral extrapolation by assuming a synchrotron spectrum. Combining X-ray with optical data, we find that 63% (19/30) GRBs are compatible with a single synchrotron spectrum thus suggesting that both the optical and X-ray radiations are produced from a single emitting region. For these GRBs we derive the temporal evolution of the break frequency and we compare it with the expectations predicted by several models. For 11/30 GRBs the optical emission is above the predicted range of values extrapolated from the X-rays in at least one temporal bin of the light curve. These GRBs may not be explained with a single zone emission, indicating the necessity of invoking two cooperating processes in order to explain the broad band spectral behaviour during X-ray plateaus. We discuss our findings in the framework of different scenarios invoked to explain the plateau feature, including the energy injection from a spinning-down magnetar and the high latitude emission from a structured jet.

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