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首页> 外文期刊>The Astrophysical Journal. Letters >Steep Decay of GRB X-Ray Flares: The Results of Anisotropic Synchrotron Radiation
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Steep Decay of GRB X-Ray Flares: The Results of Anisotropic Synchrotron Radiation

机译:GRB X射线耀斑的陡峭衰减:各向异性同步辐射的结果

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When an emitting spherical shell with a constant Lorentz factor turns off emission abruptly at some radii, its high-latitude emission would obey the relation of (alpha) over cap (the temporal index) = 2 + (beta) over cap (the spectral index). However, this relation is violated by the X-ray fares in some gamma-ray bursts (GRBs), whose (alpha) over cap is much more steeper. We show that the synchrotron radiation should be anisotropic when the angular distribution of accelerated electrons has a preferable orientation, and this anisotropy would naturally lead to a steeper decay for the high-latitude emission if the intrinsic emission is limb-brightened. We use this simple toy model to reproduce the temporal and spectral evolution of X-ray flares. We show that our model can well interpret the steep decay of the X-ray flares in the three GRBs selected as an example. Recent simulations on particle acceleration may support the specific anisotropic distribution of the electrons adopted in our work. Reversely, confirmation of the anisotropy in the radiation would provide meaningful clues to the details of electron acceleration in the emitting region.
机译:当具有恒定的Lorentz因子的发射球形壳体在一些半径下突然关闭发射时,其高纬度排放将使(alpha)在帽上的(α)= 2 +(beta)上帽(光谱索引)遵守(α) )。然而,在一些伽马射线爆发(GRBS)中的X射线票价违反了这一关系,其(alpha)过上帽子更陡峭。我们表明,当加速电子的角度分布具有优选的取向时,同步辐射应该是各向异性的,并且如果本征发射是肢体的,则这种各向异性将自然导致高纬度发射的陡峭衰减。我们使用这个简单的玩具模型来再现X射线耀斑的时间和光谱演化。我们表明我们的模型可以很好地解释作为示例所选择的三个GRB中的X射线耀斑的陡峭衰减。最近的粒子加速模拟可以支持我们工作中采用的电子的特定各向异性分布。相反,辐射中各向异性的确认将为发光区域中的电子加速细节提供有意义的线索。

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