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MONSTER IN THE DARK: THE ULTRALUMINOUS GRB 080607 AND ITS DUSTY ENVIRONMENT

机译:怪兽:黑暗的GRB 080607及其尘土飞扬的环境

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摘要

We present early-time optical through infrared photometry of the bright Swift gamma-ray burst (GRB) 080607, starting only 6 s following the initial trigger in the rest frame. Complemented by our previously published spectroscopy, this high-quality photometric data set allows us to solve for the extinction properties of the redshift 3.036 sightline, giving perhaps the most detailed information to date on the ultraviolet continuum absorption properties of any sightline outside our Local Group. The extinction properties are not adequately modeled by any ordinary extinction template (including the average Milky Way, Large Magellanic Cloud, and Small Magellanic Cloud curves), partially because the 2175 Å feature (while present) is weaker by about a factor of two than when seen under similar circumstances locally. However, the spectral energy distribution is exquisitely fitted by the more general Fitzpatrick \u26 Massa parameterization of Local-Group extinction, putting it in the same family as some peculiar Milky Way extinction curves. After correcting for this (considerable, AV = 3.3 ± 0.4 mag) extinction, GRB 080607 is revealed to have been among the most optically luminous events ever observed, comparable to the naked-eye burst GRB 080319B. Its early peak time (trest \u3c 6 s) indicates a high initial Lorentz factor (Γ \u3e 600), while the extreme luminosity may be explained in part by a large circumburst density. Only because of its early high luminosity could the afterglow of GRB 080607 be studied in such detail in spite of the large attenuation and great distance, making this burst an excellent prototype for the understanding of other highly obscured extragalactic objects, and of the class of “dark” GRBs in particular.
机译:我们介绍了明亮的Swift伽马射线暴(GRB)080607的红外光度学的早期光学技术,在其余帧中的初始触发后仅6 s开始。借助我们以前发布的光谱技术,此高质量的光度数据集使我们能够解决红移3.036视线的消光特性,从而可能提供迄今为止有关本集团以外任何视线的紫外线连续吸收特性的最详细信息。任何普通的消光模板(包括平均银河系,大麦哲伦星云和小麦哲伦星云曲线)都无法对消光特性进行充分建模,部分原因是2175Å特征(当存在时)比当时的弱2倍。在类似情况下在本地看到。但是,光谱能量分布由局部群灭绝的更一般的Fitzpatrick \ massa参数化精确拟合,使其与某些特殊的银河系灭绝曲线属于同一族。在校正了这种消光(相当大的AV = 3.3±0.4 mag)消光之后,发现GRB 080607是有史以来观察到的最光学发光的事件之一,与裸眼爆破GRB 080319B相当。它的早期峰值时间(trest \ u3c 6 s)表示较高的初始洛伦兹因子(Γ\ u3e 600),而极高的亮度可能部分由较大的周长密度来解释。尽管其衰减大且距离远,但由于其早期的高发光度,所以可以对GRB 080607的余辉进行如此详细的研究,这使其成为理解其他高度遮蔽河外物体的出色原型,并且属于“黑暗”的GRB。

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