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The enigmatic spin evolution of PSR J0537-6910: r-modes, gravitational waves and the case for continued timing

机译:psR J0537-6910的神秘自旋演化:r模式,引力波和持续时间的情况

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摘要

We discuss the unique spin evolution of the young X-ray pulsar PSR J0537-6910, a system in which the regular spin down is interrupted by glitches every few months. Drawing on the complete timing data from the Rossi X-ray Timing Explorer (RXTE, from 1999-2011), we argue that a trend in the inter-glitch behaviour points to an effective braking index close to $n=7$, much larger than expected. This value is interesting because it would accord with the neutron star spinning down due to gravitational waves from an unstable r-mode. We discuss to what extent this, admittedly speculative, scenario may be consistent and if the associated gravitational-wave signal would be within reach of ground based detectors. Our estimates suggest that one may, indeed, be able to use future observations to test the idea. Further precision timing would help enhance the achievable sensitivity and we advocate a joint observing campaign between the Neutron Star Interior Composition ExploreR (NICER) and the LIGO-Virgo network.
机译:我们讨论了年轻的X射线脉冲星PSR J0537-6910的独特自旋演化,该系统每隔几个月就会因小故障而中断正常的自旋。利用来自Rossi X射线定时资源管理器(RXTE,1999-2011)的完整定时数据,我们认为毛刺间行为的趋势表明有效制动指数接近$ n = 7 $,要大得多。超出预期。这个值很有趣,因为它将与中子星由于不稳定r模式的引力波而旋转而下降。我们将讨论这种公认的推测性场景在多大程度上可以保持一致,以及相关的重力波信号是否在基于地面的探测器的范围内。我们的估计表明,确实可以使用将来的观察结果来验证这一想法。进一步的精确计时将有助于提高可达到的灵敏度,我们提倡中子星内部构图探索器(NICER)和LIGO-Virgo网络之间的联合观测活动。

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