论文标题
准备,设置,发射:BNS合并与短GRB喷气机之间的时间间隔
Ready, set, launch: time interval between BNS merger and short GRB jet formation
论文作者
论文摘要
GW〜170817/GRB 170817的联合检测证实了长期以来的理论,即二元中子星合并产生短伽马射线爆发(SGRB)喷气机,可以成功地摆脱周围的喷射。同时,与Kilonova的关联提供了有关不同弹出成分的实体特性(例如质量和速度)的前所未有的信息。将这些知识与观察到的亮度和宇宙学SGRB的持续时间结合在一起,该知识是由neil gehrels swift天文台上的爆发警报望远镜(BAT)检测到的,我们重新审视了SGRB Jets的突破条件。假设SGRB喷气机的自我碰撞不起作用,我们发现二进制合并与典型SGRB JET的启动之间的时间间隔为$ \ lyssim0.1 $ 〜S。我们还表明,对于至少$ \ sim 30 \%$的SGRB的一小部分,通常采用的静态喷射的假设与观察不一致,即使极性喷射质量的数量级比GRB 170817中的一个小比例小。观察到的$ \ sim 1. $ \ sim 1. $ 7〜S在GW 170817 /GRB 170817中,重力波和$γ$ -Ray信号之间的延迟可能由喷气机的传播时间到$γ$ -RARE生产地点的主导。
The joint detection of GW~170817/GRB 170817 confirmed the long-standing theory that binary neutron star mergers produce short gamma-ray burst (sGRB) jets that can successfully break out of the surrounding ejecta. At the same time, the association with a kilonova provided unprecedented information regarding the physical properties (such as masses and velocities) of the different ejecta constituents. Combining this knowledge with the observed luminosities and durations of cosmological sGRBs detected by the Burst Alert Telescope (BAT) onboard the Neil Gehrels Swift Observatory, we revisit the breakout conditions of sGRB jets. Assuming self-collimation of sGRB jets does not play a critical role, we find that the time interval between the binary merger and the launching of a typical sGRB jet is $\lesssim0.1$~s. We also show that for a fraction of at least $\sim 30\%$ of sGRBs, the usually adopted assumption of static ejecta is inconsistent with observations, even if the polar ejecta mass is an order of magnitude smaller than the one in GRB 170817. Our results disfavour magnetar central engines for powering cosmological sGRBs, limit the amount of energy deposited in the cocoon prior to breakout, and suggest that the observed delay of $\sim 1.$7~s in GW 170817 /GRB 170817 between the gravitational wave and $γ$-ray signals is likely dominated by the propagation time of the jet to the $γ$-ray production site.