论文标题

通过二进制中子星级合并介质传播逼真的磁铁喷气机,并对短伽马射线爆发产生影响

Propagation of a realistic magnetar jet through binary neutron star merger medium and implications for short gamma-ray bursts

论文作者

Soares, Gustavo, Bosch, Pablo, Lazzati, Davide, Mösta, Philipp

论文摘要

短伽马射线爆发(SGRB)的起源与由二进制中子星合并的残留物提供动力的外流有关。该残留物可以是黑洞,也可以是高度磁化的,迅速旋转的中子星,也称为磁场。在这里,我们介绍了两个相对论磁性水动力学(RMHD)模拟的结果,旨在研究大规模动力学和磁铁的传播通过残留物周围的介质进行流出的流出。第一个模拟通过注入外部仿真数据来演变逼真的射流,而第二个则演变出具有相似属性的分析模型射流以进行比较。我们发现,两个流出仍然是准直的,并通过残留物周围的静态介质成功出现。但是,它们无法达到相对论速度,而现实射流的平均最大速度约为0.7C,分析喷射的平均速度约为0.6C。我们还发现现实的喷气机具有更复杂的结构。缺乏高度相对论的速度,这使得这些喷气机不适合作为短GRB来源,这是由于数值限制所致,而不是所有可能的磁性流出的限制。但是,像我们研究的喷气机一样,可以产生或增加蓝色的基洛诺瓦组件。此外,如果中子星倒入黑洞,那将使相对论喷气机的繁殖变得更加容易。

The origin of short gamma-ray bursts (sGRBs) is associated with outflows powered by the remnant of a binary neutron star merger. This remnant can be either a black hole or a highly magnetized, fastly spinning neutron star, also known as a magnetar. Here, we present the results of two relativistic magnetohydrodynamical (RMHD) simulations aimed at investigating the large-scale dynamics and propagation of magnetar collimated outflows through the medium surrounding the remnant. The first simulation evolves a realistic jet by injecting external simulation data, while the second evolves an analytical model jet with similar properties for comparison. We find that both outflows remain collimated and successfully emerge through the static medium surrounding the remnant. However, they fail to attain relativistic velocities and only reach a mean maximum speed of ~0.7c for the realistic jet, and ~0.6c for the analytical jet. We also find that the realistic jet has a much more complex structure. The lack of highly relativistic speeds, that makes these jets unsuitable as short GRB sources, is due to numerical limitations and not general to all possible magnetar outflows. A jet like the one we study, however, could give rise to or augment a blue kilonova component. In addition, it would make the propagation of a relativistic jet easier, should one be launched after the neutron star collapses into a black hole.

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