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Millisecond Pulsars in Low-Mass X-Ray Binaries

机译:低质量X射线二进制文件的毫秒脉冲条件

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Despite considerable evidence verifying that millisecond pulsars are spun up through sustained accretion in low-mass X-ray binaries (LMXBs), it has proven surprisingly difficult to actually detect millisecond X-ray pulsars in LMXBs. There are only 5 accretion-powered millisecond X-ray pulsars known among more than 80 LMXBs containing neutron stars, but there are another 11 "nuclear-powered" millisecond pulsars which reveal their spin only during brief, thermonuclear X-ray bursts. In addition, 2 of the accretion-powered pulsars also exhibit X-ray burst oscillations, and their unusual properties, along with the absence of persistent pulsations in most LMXBs, suggest that the magnetic fields in many LMXBs may be hidden by accreted material. Interestingly, the nuclear-powered pulsars offer a statistically unbiased probe of the spin distribution of recycled pulsars and show that this distribution cuts off sharply above 730 Hz, well below the breakup spin rate for most neutron star equations of state. This indicates that some mechanism acts to halt or balance spin-up due to accretion and that submillisecond pulsars must be very rare (and are possibly nonexistent). It is unclear what provides the necessary angular momentum sink, although gravitational radiation is an attractive possibility.
机译:尽管证据表明相当大的证据证明,毫秒脉冲线通过低质量X射线二进制文件(LMXBS)的持续增值来旋转,但已经证明令人惊讶地难以在LMXBS中检测毫秒X射线脉冲。含有中子恒星的80多个LMXBS中只有5个吸收功率毫秒脉冲条件,但还有另外11个“核动力”毫秒的脉冲条件,仅在简要核,热核X射线突发期间揭示了它们的旋转。另外,脉冲脉冲的2个也表现出X射线突发振荡,以及它们的不寻常的性质以及大多数LMXBS中的缺失脉动,表明许多LMXB中的磁场可以被凸起的材料隐藏。有趣的是,核动力的脉冲条提供了统计上没有偏见的再循环脉冲条件的旋转分布探头,并表明该分布急于730Hz急剧下降,远低于最大中子星形方程的断裂旋转速率。这表明某些机制由于增生而停止或平衡旋转,并且潜水突脉冲必须非常罕见(并且可能不存在)。虽然引力辐射是一种有吸引力的可能性,但目前尚不清楚是什么提供必要的角动量水槽。

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