论文标题

与GRB 170817a的余余一致的各种喷气结构

Diverse Jet Structures Consistent with the Off-axis Afterglow of GRB 170817A

论文作者

Takahashi, Kazuya, Ioka, Kunihito

论文摘要

在发现GRB 170817a作为引力波事件GW170817的电磁对应物GRB 170817a之后,短伽马射线爆发(GRB)的射流结构引起了争议。不同的作者使用不同的喷气结构来计算余辉光曲线。我们制定了一种从给定的离轴GRB余辉重建喷气结构的方法,而无需假设结构的任何功能形式。通过系统地应用我们的反转方法,我们发现更多样化的喷射结构与误差内观察到的GRB 170817a的余辉一致:例如空心控制,纺锤,高斯和幂律喷射结构。此外,重建的喷气机的总能量是任意的,与环境密度$ n_0 $成比例,如果参数满足退化组合$ n_0 \ varepsilon_ \ varepsilon_ \ mathrm {b}^{(p+1)/(p+1)/(p+1)/(p+1)/(p+1)/(p+1)/(p+1)/(p+5)/(p+1)/(p+1)/(p+1)/(p+5)} \ varepsilon_ \ mathrm {e}^{4(p-1)/(p+5)} = \ mathrm {const。} $。要区分不同形状的观察准确性小于$ \ sim 6 $ 6 $是百分比,而能量缩放的变性将通过观察光谱中断和观看角而打破。次要余波和可观察到的光谱中断的较密集环境中的未来事件非常适合我们的反转方法固定喷射结构,从而为喷气机形成和传播提供了关键。

The jet structure of short gamma-ray bursts (GRBs) has been controversial after the detection of GRB 170817A as the electromagnetic counterparts to the gravitational wave event GW170817. Different authors use different jet structures for calculating the afterglow light curves. We formulated a method to inversely reconstruct a jet structure from a given off-axis GRB afterglow, without assuming any functional form of the structure. By systematically applying our inversion method, we find that more diverse jet structures are consistent with the observed afterglow of GRB 170817A within errors: such as hollow-cone, spindle, Gaussian, and power-law jet structures. In addition, the total energy of the reconstructed jet is arbitrary, proportional to the ambient density $n_0$, with keeping the same jet shape if the parameters satisfy the degeneracy combination $n_0 \varepsilon_\mathrm{B}^{(p+1)/(p+5)} \varepsilon_\mathrm{e}^{4(p-1)/(p+5)} = \mathrm{const.}$. Observational accuracy less than $\sim 6$ per cent is necessary to distinguish the different shapes, while the degeneracy of the energy scaling would be broken by observing the spectral breaks and viewing angle. Future events in denser environment with brighter afterglows and observable spectral breaks are ideal for our inversion method to pin down the jet structure, providing the key to the jet formation and propagation.

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