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X-ray Emission Lines in GRB Afterglows: Evidence for a Two-component Jet Model

机译:GRB余辉中的X射线发射线:两分量射流模型的证据

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X-ray emission lines have been observed in X-ray afterglows of several γ-ray bursts (GRBs). It is a major breakthrough for understanding the nature of the progenitors. It has been proposed that the X-ray emission lines can be well explained by the Geometry-Dominated models, but in these models the illuminating angle is much larger than that of the collimated jet of the GRB. For GRB 011211, we have obtained an illuminating angle of about θ ~ 45°, while the angle of the GRB jet is only 3.6°. So we propose that the outflow of GRBs with emission lines should have two distinct components: a wide component that illuminates the reprocessing material and produces the emission lines and a narrow one that produces the GRB. Observations show the energy for producing the emission lines is higher than that of the GRB. In this case, when the wide component dominates the afterglows, a bump should appear in the GRB afterglow. For GRB 011211, the bump should occur within 0.05 days of the GRB, which is obviously too early for the observation to catch it. Alongside the X-ray emission lines there should also be a bright emission component between the UV and the soft X-rays. These features can be tested by the Swift satellite in the near future.
机译:在几个γ射线爆发(GRB)的X射线余辉中已经观察到X射线发射线。这是了解祖细胞性质的重大突破。已经提出,可以通过几何主导模型很好地解释X射线发射线,但是在这些模型中,照明角度远大于GRB准直射束的照明角度。对于GRB 011211,我们获得了大约θ〜45°的照明角度,而GRB射流的角度仅为3.6°。因此,我们建议带有排放管线的GRB流出应该具有两个截然不同的组成部分:一个宽的组件照亮后处理材料并产生排放管线,而一个狭窄的组件则产生GRB。观察表明,产生排放线的能量高于GRB。在这种情况下,当宽分量主导余辉时,应在GRB余辉中出现凸起。对于GRB 011211,碰撞应该发生在GRB的0.05天内,这显然还为时过早,以至于观察不到。沿着X射线发射线,在UV和柔和X射线之间还应该有明亮的发射分量。这些功能可以在不久的将来由Swift卫星进行测试。

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