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Models of Type I X-Ray Bursts from 4U 1820–30

机译:从4U 1820–30开始的I型X射线爆裂模型

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I present ignition models for type I X-ray bursts and superbursts from the ultracompact binary 4U 1820-30. A pure helium secondary is usually assumed for this system (which has an orbital period ≈11 minutes); however, some evolutionary models predict a small amount of hydrogen in the accreted material (mass fraction X ~ 0.1). I show that the presence of hydrogen significantly affects the type I burst recurrence time if X 0.03 and the CNO mass fraction 3 × 10-3. When regularly bursting, the predicted burst properties agree well with observations. The observed 2-4 hr recurrence times are reproduced for a pure He companion if the time-averaged accretion rate is ≈ (7–10) × 10-9 M☉ yr-1 or a hydrogen-poor companion if ≈ (4–6) × 10-9 M☉ yr-1. This result provides a new constraint on evolutionary models. The burst energetics are consistent with complete burning and spreading of the accreted fuel over the whole stellar surface. Models with hydrogen predict ~10% variations in burst fluence with recurrence time, which could perhaps distinguish the different evolutionary scenarios. I use the accretion rates determined by matching the type I burst recurrence times to predict superburst properties. The expected recurrence times are ≈1-2 yr for pure He accretion (much less than that found by Strohmayer & Brown) and ≈5-10 yr if hydrogen is present. Determination of the superburst recurrence time would strongly constrain the local accretion rate and thermal structure of the neutron star.
机译:我介绍了超紧凑型二进制4U 1820-30的I型X射线爆发和超爆发的点火模型。通常假定该系统为纯氦二次气(轨道周期≈11分钟)。但是,一些进化模型预测吸出的物质中会有少量氢(质量分数X〜0.1)。我发现,如果X 0.03和CNO质量分数3×10-3,则氢的存在会显着影响I型猝发复发时间。当定期爆发时,预测的爆发特性与观察结果非常吻合。如果时间平均吸积率≈(7–10)×10-9M☉yr-1,则对于纯He伴侣,观察到的2-4小时重复时间将重现;如果≈(4–6 )×10-9M☉yr-1。这一结果为进化模型提供了新的约束。爆发的能量学与积聚的燃料在整个恒星表面上的完全燃烧和散布是一致的。含氢的模型预测突发通量随复发时间变化约10%,这也许可以区分出不同的进化场景。我使用通过匹配I型爆发重复时间确定的吸积率来预测超爆发特性。纯He的预期复发时间约为1-2年(比Strohmayer&Brown发现的要短得多),如果存在氢,则约为5-10年。超爆发时间的确定将强烈限制中子星的局部积聚率和热结构。

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