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首页> 外文期刊>The Astrophysical journal >Eclipse Timings of the Low-Mass X-Ray Binary EXO 0748–676. II. Detection of an Apparent Orbital Period Change and of Orbital Period Noise
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Eclipse Timings of the Low-Mass X-Ray Binary EXO 0748–676. II. Detection of an Apparent Orbital Period Change and of Orbital Period Noise

机译:低质量X射线二进制EXO 0748–676的Eclipse时序。二。视在轨道周期变化和轨道周期噪声的检测

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The rare eclipsing low-mass X-ray binary EXO 0748-676 has now been monitored accurately for over a decade in the hope of detecting orbital period evolution. We report observations of 10 complete eclipses at resolution less than 0.1 s with the Rossi X-ray Timing Explorer during 1996 May and 1996 August. We have timed the eclipses with an accuracy limited by photon statistics to 0.2-0.5 s. When combined with historical measurements, the eclipse timings imply an unexpectedly large orbital period derivative, orb=3.3 × 10?11, and a rapid timescale for orbital evolution, τorb = 1.3 × 107 yr. The observations also require considerable intrinsic jitter in the mideclipse timings; a maximum likelihood estimate is 0.15 s per orbital cycle. We consider various models and scenarios that might account for these unexpected results.
机译:稀有的低质量X射线双星EXO 0748-676现今已被精确监测了十多年,以期检测出轨道周期的演变。我们报告了在1996年5月和1996年8月用Rossi X射线定时资源管理器观测到的10次日食观测,分辨率小于0.1 s。我们已经将日食定时,其精度受光子统计限制为0.2-0.5 s。当与历史测量结果相结合时,日食定时意味着一个意想不到的大轨道周期导数,orb = 3.3×10?11,以及一个快速的轨道演化时标,τorb= 1.3×107 yr。观测还需要在中蚀定时产生相当大的固有抖动。每个轨道周期的最大似然估计为0.15 s。我们考虑了可能导致这些意外结果的各种模型和场景。

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