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Long-term developments in Her X-1: Correlation between the histories of the 35 day turn-on cycle and the 1.24 sec pulse period

机译:她的X-1中的长期发展:35天导通循环的历史与1.24秒脉冲周期之间的相关性

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We have studied the long-term (1971–2005) behaviour of the 1.24 sec pulse period and the 35 day precession period of Her X-1 and show that both periods vary in a highly correlated way (see also Staubert et al. 1997 and 2000). When the spin-up rate decreases, the 35 day turn-on period shortens. This correlation is most evident on long time scales (~2000 days), e.g., around four extended spin-down episodes, but also on shorter time scales (a few 100 days) on which quasi-periodic variations are apparent. We argue that the likely common cause is variations of the mass accretion rate onto the neutron star. The data since 1991 allow a continuous sampling and indicate a lag between the turn-on behaviour and the spin behaviour, in the sense that changes are first seen in the spin, about one cycle later in the turn-on. Both the coronal wind model (Schandl & Meyer 1994) as well as the stream-disk model (Shakura et al. 1999) predict this kind of behaviour.
机译:我们研究了1.24秒脉冲周期的长期(1971-2005)行为和她X-1的35天的预防时段,并表明这两个时期都以高度相关的方式变化(参见Staubert等人1997年和2000)。当旋转速率降低时,35天的开启期缩短。这种相关性最明显的长时间尺度(〜2000天),例如,在四个扩展的旋转剧集中,但也缩短了较短的时间尺度(几百天),准时变化很明显。我们认为可能的常见原因是中子星的质量增生速率的变化。自1991年以来的数据允许连续采样,并在开启行为和旋转行为之间表明滞后,从旋转中首次看到变化,在开启时稍后大约一个周期。冠状风模型(Schandl&Meyer 1994)以及流磁盘模型(Shakura等,1999)预测了这种行为。

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