ROSAT测量的LMXB EXO0748‐676的演变轨道周期

P. Hertz, Y. Ly, K. Wood, L. Cominsky
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引用次数: 0

摘要

轨道周期导数的符号和大小可能是低质量x射线双星(lmxb)演化的最关键诊断。然而,在轨道周期导数的测量中,轨道周期导数是小于4 lmbx的。其中之一是日食x射线双星EXO0748‐676,其锐利的边缘日食过渡提供了一个很好的基准标记。我们用ROSAT观测到了一次日食的出口。我们将我们的数据与EXOSAT和Ginga时间相结合,以适应EXO0748‐676的星历。假设观测到的日食时间仅由确定性周期加上测量误差决定,我们确认Asai等人-一个恒定周期和恒定周期导数都被排除在外。一个常数的二阶导数和一个12年的正弦变异性提供了同样好的拟合。轨道周期的正弦变化使人联想到几个灾难性的变量。这个周期可以解释为第三个天体或自旋轨道耦合的证据。然而,没有观察到CV超过1.5长…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ROSAT measurement of the evolving orbital period in the LMXB EXO0748‐676
The sign and magnitude of the orbital period derivative are perhaps the most critical diagnostics of the evolution of low mass x‐ray binaries (LMXBs). However ≲4 LMBXs have measured orbital period derivatives. One of these is the eclipsing x‐ray binary EXO0748‐676, whose sharp edged eclipse transitions provide a good fiducial marker. We have observed a single eclipse egress with ROSAT. We have combined our data with EXOSAT and Ginga timings to fit the ephemeris of EXO0748‐676. Assuming that the observed eclipse times are determined solely by a deterministic period plus measurement error, we confirm Asai et al.—a constant period and a constant period derivative are both ruled out. A constant second period derivative and a 12 yr sinusoidal variability provide equally good fits. The sinusoidal variation in orbital period is reminiscent of several cataclysmic variables. The period could be interpreted as evidence of a third body or of spin‐orbit coupling. However no CV has been observed for more than 1.5 long...
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