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Two ~35?day clocks in Hercules X-1: evidence for neutron star free precession

机译:大力神X-1中的两个〜35?天钟:无中子星进动的证据

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We present evidence for the existence of two 35day clocks in the HerX-1/HZHer binary system. 35day modulations are observed1) in the Turn-On cycles with two on- and two off-states and 2) in the changing shape of the pulse profiles which re-appears regularly. The two ways of counting the 35day cycles are generally in synchronization. This synchronization did apparently break down temporarily during the long Anomalous Low (AL3), which Her X-1 experienced in 1999/2000, in the sense that there must have been one extra Turn-On cycle.Our working hypothesis is that there are two clocks in the system, both with a period of about 35days: precession of the accretion disk (the less stable ``Turn-On clock'') and free precession of the neutron star (the more stable ``Pulse profile clock''). We suggest that free precession of the neutron star is the master clock and that the precession of the accretion disk isbasically synchronized to that of the neutron star through a feedback mechanism in the binary system. However, the Turn-On clock can slip against its masterwhen the accretion disk has a very low inclination, as is observed to be the case during AL3. We take the apparent correlation between the histories of the Turn-Ons, of the Anomalous Lows and of the pulse period evolution, with a 5yr quasi-periodicity, as evidence for strong physical interaction and feedback between the major components in the system. We speculate that the 5yr (10yr) period is due either to a corresponding activity cycle of HZHer or a naturalringing period of the physical system of coupled components. The question of whether free precession really exists in neutron stars is very important for understandingmatter with supra-nuclear density.Key words: stars: binaries: general - accretion, accretion disks - stars: neutron - X-rays: general - X-rays: binaries - X-rays: individuals: Her X-1
机译:我们提供证据证明HerX-1 / HZHer二进制系统中存在两个35天时钟。观察到35天的调制1)在具有两个打开和两个关闭状态的开启周期中,以及2)脉冲轮廓的变化形状(定期重新出现)中。计算35天周期的两种方法通常是同步的。在1999/2000年她的X-1经历了很长的异常低(AL3)期间,这种同步显然确实暂时中断了,这意味着必须有一个额外的开启周期。我们的工作假设是有两个系统中的时钟,周期均为35天:吸积盘的进动(不稳定的``打开时钟'')和中子星的自由进动(更稳定的``脉冲轮廓时钟'') 。我们建议中子星的自由进动是主时钟,并且吸积盘的进动通过二元系统中的反馈机制基本上与中子星的进动同步。但是,当吸积盘的倾斜度很低时(如AL3期间的情况),打开时钟可能会滑向其主时钟。我们将开启,异常低点和脉冲周期演化的历史之间的明显相关性(准周期为5年)作为系统主要组成部分之间强大的物理交互作用和反馈的证据。我们推测5yr(10yr)期是由于HZHer的相应活动周期或耦合组件物理系统的自然期引起的。中子星是否真正存在自由进动的问题对于理解超核密度的物质非常重要。关键词:星:双星:一般-吸积,吸积盘-星星:中子-X射线:普通-X射线:二进制文件-X射线:个人:她的X-1

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