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Internal rotation of 13 low-mass low-luminosity red giants in the field

机译:野外13个低质量,低发​​光度的红色巨人的内部旋转

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Context. The Kepler space telescope has provided time series of red giants of such unprecedented quality that a detailed asteroseismic analysis becomes possible. For a limited set of about a dozen red giants, the observed oscillation frequencies obtained by peak-bagging together with the most recent pulsation codes allowed us to reliably determine the core/envelope rotation ratio. The results so far show that the current models are unable to reproduce the rotation ratios, predicting higher values than what is observed and thus indicating that an efficient angular momentum transport mechanism should be at work. Here we provide an asteroseismic analysis of a sample of 13 low-luminosity low-mass red giant stars observed by Kepler during its first nominal mission. These targets form a subsample of the 19 red giants studied previously, which not only have a large number of extracted oscillation frequencies, but also unambiguous mode identifications. Aims. We aim to extend the sample of red giants for which internal rotation ratios obtained by theoretical modeling of peak-bagged frequencies are available. We also derive the rotation ratios using different methods, and compare the results of these methods with each other. Methods. We built seismic models using a grid search combined with a Nelder-Mead simplex algorithm and obtained rotation averages employing Bayesian inference and inversion methods. We compared these averages with those obtained using a previously developed model-independent method. Results. We find that the cores of the red giants in this sample are rotating 5 to 10 times faster than their envelopes, which is consistent with earlier results. The rotation rates computed from the different methods show good agreement for some targets, while some discrepancies exist for others.
机译:上下文。开普勒太空望远镜为红色巨星提供了前所未有的质量时间序列,从而可以进行详细的星震分析。对于大约十二个红色巨人的有限集合,观察到的通过峰值装袋获得的振荡频率以及最新的脉动代码使我们能够可靠地确定纤芯/包络线的旋转比。迄今为止的结果表明,当前的模型无法再现旋转比,因此预测的值将高于观察到的值,因此表明有效的角动量传递机制应该起作用。在这里,我们提供了开普勒首次名义任务期间观测到的13个低发光度,低质量的红色巨星样本的星震分析。这些目标构成了先前研究的19个红色巨人的子样本,这些子样本不仅具有大量提取的振荡频率,而且具有明确的模式识别。目的我们的目标是扩展红色巨人的样本,对于这些样本,可以通过对峰袋频率的理论建模获得内部旋转比。我们还使用不同的方法得出旋转比,并将这些方法的结果相互比较。方法。我们使用网格搜索结合Nelder-Mead单纯形算法建立了地震模型,并使用贝叶斯推断和反演方法获得了旋转平均值。我们将这些平均值与使用先前开发的模型无关方法获得的平均值进行了比较。结果。我们发现,此样本中红色巨人的核心旋转速度比其信封快5到10倍,这与之前的结果一致。通过不同方法计算出的转速对于某些目标显示出良好的一致性,而对于其他目标则存在一些差异。

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