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首页> 外文期刊>The Astrophysical journal >PULSE ARRIVAL TIME GLITCHES IN GRO J1744-28
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PULSE ARRIVAL TIME GLITCHES IN GRO J1744-28

机译:GRO J1744-28中的脉冲到达时间故障

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摘要

We observe glitches in the arrival times of X-ray pulses from GRO J1744—28 associated with the large X-ray bursts observed from this source. In early observations, the pulse arrival time becomes delayed by 28 ms (6% of the 467 ms pulsar period) following bursts while the shape of the nearly sinusoidal light curve is essentially unchanged. This arrival-time lag decays exponentially over the next ~1000 s. In later observations, the observed phase lags are smaller, and eventually, some bursts appear to be accompanied by a small phase advance. While explanations of these observations that rely upon changes in the postburst accretion flow are natural, our observations present some problems for these explanations. It may be that this behavior can be understood by analogy with glitches in spinning-down radio pulsars, though this explanation has its own problems. Explained as a glitch, the phase shift is the result of coupling of the neutron star's crust to the crustal superfluid, which is spun up More slowly than the rest of the star, and the recovery is due to coupling between the crust and the core of the neutron star.
机译:我们观察到来自GRO J1744-28的X射线脉冲的到达时间出现毛刺,这与从该源观察到的大X射线爆发有关。在早期观察中,脉冲后脉冲到达时间延迟了28 ms(467 ms脉冲星周期的6%),而近正弦光曲线的形状基本不变。在接下来的〜1000 s内,到达时间滞后呈指数衰减。在以后的观察中,观察到的相位滞后较小,并且最终,某些脉冲串似乎伴随着较小的相位超前。尽管这些根据爆炸后吸积流变化的观察结果是很自然的,但我们的观察结果却为这些解释带来了一些问题。也许可以通过类似于旋转无线电脉冲星中的毛刺来理解这种行为,尽管这种解释有其自身的问题。解释为一个小故障,相移是中子星地壳与地壳超流体耦合的结果,地壳超流体的旋转比恒星其余部分更慢,并且恢复是由于地壳和核的核心之间的耦合所致。中子星。

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