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A Natural Limit on the Observable Periods of Anomalous X-ray Pulsars and Soft Gamma-ray Repeaters

机译:异常X射线脉冲条件和软γ射线中继器的可观察时段的自然限制

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We investigate the dependence of the evolution of neutron stars with fallback disks on the strength of the magnetic dipole field of the star. Using the same model as employed by Ertan et al. (2009), we obtain model curves for different dipole fields showing that the neutron stars with magnetic dipole fields greater than ti 1013 G on the surface of the star are not likely to become anomalous X-ray pulsars (AXPs) and soft gamma-ray repeaters (SGRs). Other sources with conventional dipole fields evolve into the AXP phase if their disk can penetrate the light cylinder. The upper limits to the observed periods of AXP and SGRs could be understood if the disk becomes inactive below a low temperature around 100 K. We summarize our present and earlier results indicated by the evolutionary model curves of these sources with an emphasis on the importance of the minimum disk temperature and the X-ray irradiation in the long-term evolution of AXPs and SGRs with fallback disks.
机译:我们调查中子恒星的演化与倒下磁盘上的磁性偶极场的强度的依赖性。使用与Ertan等人所采用的相同模型。 (2009),我们获得不同的偶极场的模型曲线,显示磁性偶极场的中子恒星大于该星形表面的磁性偶极场的中子恒星不太可能成为异常的X射线脉冲条(AXPS)和软伽马射线中继器(SGRS)。如果它们的盘可以穿透光滚筒,则具有常规偶极区域的其他具有传统偶极区域的来源。如果磁盘在大约100k的低温低于低温下方在低温低于低温下,则可以理解到观察到的AXP和SGR的上限。我们总结了我们的现在和早期结果,这些来源的进化模型曲线表示,重点是重要的最小磁盘温度和X射线照射在AXPS和SGRS的长期演进中,具有回力盘。

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