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Constraining the Structure of Gamma-Ray Burst Jets through the Afterglow Light Curves

机译:通过余辉光曲线约束伽马射线暴射流的结构

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We investigate the effect that the structure of gamma-ray burst (GRB) jets has on the afterglow light curves for observers located at different viewing angles, θobs, from the jet symmetry axis. The largest uncertainty in the jet dynamics is the degree of lateral energy transfer. Thus, we use two simple models that make opposite and extreme assumptions for this point and calculate the light curves for an external density that is either homogeneous or decreases as the square of the distance from the source. The Lorentz factor, Γ, and kinetic energy per unit solid angle, , are initially taken to be power laws of the angle θ from the jet axis: ∝ θ-a, Γ ∝ θ-b. We perform a qualitative comparison between the resulting light curves and afterglow observations. This constrains the jet structure, and we find that a ≈ 2 and 0 b 1 are required to reproduce typical afterglow light curves. Detailed fits to afterglow data are needed to determine whether a "universal" jet model, in which all GRB jets are assumed to be intrinsically identical and differ only by our viewing angle, θobs, is consistent with current observations.
机译:我们研究了伽玛射线暴(GRB)射流的结构对从射流对称轴位于不同视角θobs的观察者的余辉光曲线的影响。射流动力学的最大不确定性是横向能量转移的程度。因此,我们使用两个简单的模型对此点进行相反和极端的假设,并计算出外部密度均匀或随着距光源的距离的平方而减小的光密度曲线。最初将洛伦兹因子Γ和每单位立体角的动能设为与射流轴的夹角θ的幂律:∝θ-a,Γθθ-b。我们对所得的光曲线和余辉观测值进行定性比较。这限制了射流的结构,我们发现再现典型的余辉光曲线需要a≈2和0 b 1。需要对余辉数据进行详细拟合,以确定“通用”射流模型(其中所有GRB射流均假定为本质上相同且仅以我们的视角θobs不同)是否与当前观察结果一致。

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