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A Decade Of Timing An Accretion-Powered Millisecond Pulsar: The Continuing Spin Down And Orbital Evolution Of Sax J1808.4–3658

机译:十年的时间 - 一个增加动力的毫秒脉冲星:萨克斯J1808.4-3658的持续旋转和轨道演化

摘要

The Rossi X-ray Timing Explorer has observed five outbursts from the transient 2.5 ms accretion-powered pulsar SAX J1808.4–3658 during 1998-2008. We present a pulse timing study of the most recent outburst and compare it with the previous timing solutions. The spin frequency of the source continues to decrease at a rate of (–5.5 ± 1.2) × 10[superscript –18] Hz s[superscript –1], which is consistent with the previously determined spin derivative. The spin down occurs mostly during quiescence, and is most likely due to the magnetic dipole torque from a B = 1.5 × 10[superscript 8] G dipolar field at the neutron star surface. We also find that the 2 hr binary orbital period is increasing at a rate of (3.80 ± 0.06) × 10[superscript –12] s s[superscript –1], also consistent with previous measurements. It remains uncertain whether this orbital change reflects secular evolution or short-term variability.
机译:在1998-2008年期间,罗西(Rossi)X射线定时资源管理器观测到从瞬态2.5 ms增生动力脉冲星SAX J1808.4-3658爆发了五个爆发。我们介绍了最近爆发的脉冲计时研究,并将其与以前的计时解决方案进行了比较。源的自旋频率以(–5.5±1.2)×10 [上标–18] Hz s [上标–1]的速率持续降低,这与先前确定的自旋导数一致。自旋下降主要发生在静止期间,最有可能是由于中子星表面的B = 1.5×10 ^ 8 G G偶极场产生的磁偶极矩。我们还发现,2小时的二进制轨道周期以(3.80±0.06)×10 [上标–12] s s [上标–1]的速率增加,这也与以前的测量结果一致。这种轨道的变化是否反映了长期演化还是短期变化尚不确定。

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