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Off-Axis Afterglow Light Curves from High-Resolution Hydrodynamical Jet Simulations

机译:来自高分辨率流体动力喷射模拟的轴外余辉光线曲线

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Numerical jet simulations serve a valuable role in calculating gamma-ray burst afterglow emission beyond analytical approximations. Here we present the results of high resolution 2D simulations of decelerating relativistic jets performed using the RAM adaptive mesh refinement relativistic hydrodynamics code. We have applied a separate synchrotron radiation code to the simulation results in order to calculate light curves at frequencies varying from radio to X-ray for observers at various angles from the jet axis. We provide a confirmation from radio light curves from simulations rather than from a simplified jet model for earlier results in the literature finding that only a very small number of local Ibc supernovae can possibly harbor an orphan afterglow. Also, recent studies have noted an unexpected lack of observed jet breaks in the Swift sample. Using a jet simulation with physical parameters representative for an average Swift sample burst, such as a jet half opening angle of 0.1 rad and a source redshift of z velence 2.23, we have created synthetic light curves at 1.5 keV with artifical errors while accounting for Swift instrument biases as well. A large set of these light curves have been generated and analyzed using a Monte Carlo approach. Single and broken power law fits are compared. We find that for increasing observer angle, the jet break quickly becomes hard to detect. This holds true even when the observer remains well within the jet opening angle. We find that the odds that a Swift light curve from a randomly oriented 0.1 radians jet at z velence 2.23 will exhibit a jet break at the 3sigma level are only 12 percent. The observer angle therefore provides a natural explanation for the lack of perceived jet breaks in the Swift sample.
机译:数值喷射模拟在计算超出分析近似的伽马射线爆发后发射时提供了有价值的作用。在这里,我们介绍了使用RAM自适应网格细化相对论流体动力学码执行的减速相对论喷射的高分辨率2D模拟的结果。我们已经向模拟结果应用了单独的同步辐射码代码,以便在从喷射轴上以各种角度从无线电变化到X射线的频率下的光曲线。我们提供从仿真无线电曲线的确认,而不是从简化的喷射模型,在文献中发现只有一个非常少数的本地IBC超新星可能会覆盖孤儿余辉。此外,最近的研究已经注意到Swift样本中的意外缺乏观察到的喷射破裂。使用具有用于平均SWIFT样品突发的物理参数代表的喷射模拟,例如0.1 rad的射流半打开角度和z velence 2.23的源红移,我们创建了1.5 kev的合成光曲线,同时汇总了迅速的人工错误仪器偏见也是如此。已经使用蒙特卡罗方法生成并分析了大量这些光曲线。比较单一和破碎的权力法。我们发现,为了增加观察者角度,喷射断裂迅速变得难以检测。即使观察者在喷射打开角度内保持良好时,这也保持了真实。我们发现,在Z velence 2.23的随机为导向的0.1弧度喷射的Swift光线曲线的赔率将在3平面水平上表现出喷射突破仅为12%。因此,观察者角度为SWIFT样本中缺乏感知喷射破裂提供了自然的解释。

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