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首页> 外文期刊>The Astrophysical journal >Binary Companions of Evolved Stars in APOGEE DR14: Orbital Circularization
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Binary Companions of Evolved Stars in APOGEE DR14: Orbital Circularization

机译:APOGEE DR14中已演化恒星的二元同伴:轨道圆化

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Short-period binary star systems dissipate orbital energy through tidal interactions that lead to tighter, more circular orbits. Using a sample of binaries with subgiant, giant, and red clump star members that is nearly an order of magnitude larger than that of Verbunt & Phinney, we reexamine predictions for tidal circularization of binary stars with evolved members. We confirm that binary star systems in our sample predicted to have circular orbits (using equilibrium tide theory) generally have negligible measured eccentricities. At a fixed stellar mass, the transition period is correlated with the surface gravity (i.e., size) of the evolved member, indicating that the circularization timescale must be shorter than the evolutionary timescale along the giant branch. A few exceptions to the conclusions above are mentioned in the discussion. Some of these exceptions are likely systems in which the spectrum of the secondary biases the radial velocity measurements, but four appear to be genuine, short-period, moderate-eccentricity systems.
机译:短周期双星系统通过潮汐相互作用消散轨道能量,导致更紧密,更圆的轨道。我们使用了具有亚巨人,巨型和红色丛状星体成员的双星样本,该样本比Verbunt&Phinney的星体样本大将近一个数量级,我们重新检查了具有演化成员的双星的潮汐环化的预测。我们确认样本中的双星系统(使用平衡潮理论)预测具有圆形轨道,其测量的偏心率通常可以忽略不计。在恒星质量固定的情况下,过渡期与演化成员的表面重力(即大小)相关,这表明圆化时标必须短于沿巨枝的演化时标。在讨论中提到了以上结论的一些例外。这些例外中的一些可能是其中次级线圈的频谱偏向径向速度测量的系统,但其中四个似乎是真正的,短周期的,中等偏心率的系统。

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