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Pulsar Recoil by Large-Scale Anisotropies in Supernova Explosions

机译:超新星爆发中大尺度各向异性的脉冲星后坐力

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摘要

Assuming that the neutrino luminosity from the neutron star core is sufficiently high to drive supernova explosions by the neutrino-heating mechanism, we show that low-mode (l = 12) convection can develop from random seed perturbations behind the shock. A slow onset of the explosion is crucial, requiring the core luminosity to vary slowly with time, in contrast to the burstlike exponential decay assumed in previous work Gravitational and hydrodynamic forces by the globally asymmetric supernova ejecta were found to accelerate the remnant neutron star on a time scale of more than a second to velocities above 500 km s~(-1), in agreement with observed pulsar proper motions.
机译:假设来自中子星核的中微子光度足够高,可以通过中微子加热机制驱动超新星爆炸,我们表明低模态(l = 12)对流可以由冲击后的随机种子扰动产生。缓慢的爆发起着至关重要的作用,要求核的光度随时间缓慢变化,这与先前工作中假定的爆发状指数衰减相反,全球不对称超新星喷射产生的引力和流体动力促使了中子上的残余中子星加速。超过500 km s〜(-1)的速度超过一秒的时间尺度,这与观测到的脉冲星固有运动一致。

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