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GRB 090727 AND GAMMA-RAY BURSTS WITH EARLY-TIME OPTICAL EMISSION

机译:GRB 090727和具有早期光发射的伽马射线爆裂

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We present a multi-wavelength analysis of Swift gamma-ray burst GRB 090727, for which optical emission was detected during the prompt gamma-ray emission by the 2?m autonomous robotic Liverpool Telescope and subsequently monitored for a further two?days with the Liverpool and Faulkes Telescopes. Within the context of the standard fireball model, we rule out a reverse shock origin for the early-time optical emission in GRB 090727 and instead conclude that the early-time optical flash likely corresponds to emission from an internal dissipation process. Putting GRB 090727 into a broader observational and theoretical context, we build a sample of 36 gamma-ray bursts (GRBs) with contemporaneous early-time optical and gamma-ray detections. From these GRBs, we extract a sub-sample of 18 GRBs, which show optical peaks during prompt gamma-ray emission, and perform detailed temporal and spectral analysis in gamma-ray, X-ray, and optical bands. We find that in most cases early-time optical emission shows sharp and steep behavior, and notice a rich diversity of spectral properties. Using a simple internal shock dissipation model, we show that the emission during prompt GRB phase can occur at very different frequencies via synchrotron radiation. Based on the results obtained from observations and simulation, we conclude that the standard external shock interpretation for early-time optical emission is disfavored in most cases due to sharp peaks (Δt/t 1) and steep rise/decay indices, and that internal dissipation can explain the properties of GRBs with optical peaks during gamma-ray emission.
机译:我们对Swift伽马射线暴GRB 090727进行了多波长分析,在2毫米自动机器人利物浦望远镜的快速伽马射线发射过程中检测到了该光发射,随后利物浦对其进行了另外两天的监测和福克斯望远镜。在标准火球模型的上下文中,我们在GRB 090727中排除了早期光发射的反向冲击起源,而是得出结论,早期光闪光很可能与内部耗散过程的发射相对应。将GRB 090727应用于更广泛的观察和理论环境中,我们建立了36个带有同时早期光学和伽马射线探测的伽马射线暴(GRB)的样本。从这些GRB中,我们提取了18个GRB的子样本,它们在快速的伽马射线发射过程中显示出光学峰,并在伽马射线,X射线和光学波段中进行了详细的时间和光谱分析。我们发现,在大多数情况下,早期的光发射表现出陡峭和陡峭的行为,并注意到丰富的光谱特性。使用简单的内部冲击耗散模型,我们表明,通过同步加速器辐射,快速GRB阶段的发射可以在非常不同的频率下发生。根据观察和模拟获得的结果,我们得出结论,在大多数情况下,由于尖峰(Δt/ t <1)和陡峭的上升/下降指数以及内部耗散可以解释伽玛射线发射期间具有光学峰的GRB的特性。

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