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Observational evidence for magnetars powering GRBs

机译:Magnetars Powercing Grbs的观察证据

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The core-collapse of a massive star may lead either to a black hole or a, possibly unstable, rapidly-rotating magnetar. A magnetar provides an potential additional source of rotational energy which is available to power emission during the burst. If the energy reservoir is used up the magnetar may then suffer gravitational collapse ending the emission period. We have carried out a systematic search for the signature of a spinning-down magnetar in the long GRBs observed by the Swift satellite up to the end of 2008. We find 10 GRBs that have a feature - which we call an "internal plateau" - in their light curves that can be associated with the injection of energy into the jet by a magnetar. The duration and intensity of the internal plateau provides constraints on the initial spin period and magentic field of the magnetar. The derived magnetic fields are large compared to those of long-lived Galactic magnetars, but are within the most extreme values predicted for magnetars.
机译:巨大明星的核心崩溃可能导致黑洞或可能不稳定,快速旋转的磁力。磁石提供潜在的旋转能源来源,可用于在突发期间发射发射。如果能量储存器被用完,则磁力可以遭受引力塌陷结束发射时段。我们已经对2008年底观察到的长GRB中的旋转磁铁签名的系统搜索。我们发现10个具有功能的GRB - 我们称之为“内部高原” - 在它们的光线曲线中,可以通过磁铁将能量注入能量相关联。内部高原的持续时间和强度为磁力的初始自旋周期和品种场的约束提供了约束。与长寿命的银河磁铁相比,衍生的磁场大大,但在预测磁铁的最极端值内。

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