论文标题
2016 Vela Glitch:中子星内结构和动态的关键
The 2016 Vela glitch: a key to neutron star internal structure and dynamics
论文作者
论文摘要
高分辨率,脉搏观察2016 Vela Glitch及其松弛为探测中子星的内部结构和动力学的机会,并具有前所未有的细节。我们使用这种小故障的观察结果来推断涡流模型框架中的超流体特征。 12.6秒的小故障上升时间限制对地壳超流体和观察到的地壳之间的角动量交换施加了严格的限制。与观察到的旋转速率的过量加速度相比,与吉利群后平衡值相比,这会区分地壳超流体 - 壳晶格和核心超流体 - 壳法线正常物质偶联时间尺度。在故障之前,地下旋转速率的明显降低与启动大型涡流脱离雪崩的新涡流陷阱区的形成是一致的。地壳破裂的地震形成涡流陷阱会引起短暂的磁层变化。长期glitch后旋转速率演变的演变揭示了参与故障的超氟层的惯性和重耦时间尺度,并导致估计到下一个故障的时间,这与2016年至2019年的小故障之间的时间间隔一致。我们的结果与超流体中有效中子和质子质量的理论估计值一致。我们还将每个交叉路口固定的涡流线 - 液管管固定为2 MeV。
High resolution, pulse to pulse observation of the 2016 Vela glitch and its relaxation provided an opportunity to probe the neutron star internal structure and dynamics with unprecedented detail. We use the observations of this glitch to infer superfluid characteristics in the framework of the vortex creep model. The glitch rise time constraint of 12.6 seconds put stringent limits on the angular momentum exchange between the crustal superfluid and the observed crust. Together with the observed excess acceleration in the rotation rate as compared to the post-glitch equilibrium value this discriminates crustal superfluid-crust lattice and core superfluid-crustal normal matter coupling time-scales. An evident decrease in the crustal rotation rate immediately before the glitch is consistent with the formation of a new vortex trap zone that initiates the large scale vortex unpinning avalanche. Formation of vortex trap by a crust breaking quake induces short-lived magnetospheric changes. The long term post-glitch spin-down rate evolution reveals the moments of inertia and recoupling time-scales of the superfluid layers participating in the glitch and leads to an estimation of the time to the next glitch which agrees with the time interval between the 2016 and 2019 glitches. Our results are consistent with theoretical estimates of effective neutron and proton masses in the superfluid. We also constrain the vortex line-flux tube pinning energy per intersection as 2 MeV.