论文标题
演变的恒星的星形遗传学限制了角动量II的内部转运。测试Tayler不稳定的经过修订的运输处方
Asteroseismology of evolved stars to constrain the internal transport of angular momentum II. Test of a revised prescription for transport by the Tayler instability
论文作者
论文摘要
上下文:星形震次测量表明,次级和红色巨星需要一种未知的有效角动量(AM)传输机制。最近已提出了磁性泰勒不稳定的AM运输的修订处方,作为这种缺失机制的可能候选者。 结果:泰勒不稳定性运输的经修订的处方会导致主要序列之后的核心旋转速率低于与纯流体动力学过程或原始泰勒 - 苏普利特·迪纳摩(Tayler-Spruit Dynamo)模型预测的核心测量更好的全球性一致性。与Atheroseiscic数据的详细比较表明,六个子构架中的最多旋转性能可以通过占该修订后的磁运输过程的模型来正确复制。该结果与此处方中校准参数所采用的值无关。我们还发现,泰勒不稳定的这种运输在同时繁殖用于亚巨星和红色巨星的强糖酶测量方面面临困难。校准参数的低值要正确地重现六个子构架中两个的旋转特性,导致在红色巨型相中的核心旋转速率太高。相反,重现红色巨人核心旋转速率所需的较高值的较高值导致红色巨型阶段之前的径向差异旋转非常低,这与亚巨星的内部旋转矛盾。 结论:以目前的形式,泰勒不稳定性运输的修订处方并不能为不断发展的恒星的星空学揭示的缺失的AM运输提供完整的解决方案。
Context: Asteroseismic measurements reveal that an unknown efficient angular momentum (AM) transport mechanism is needed for subgiant and red giant stars. A revised prescription for AM transport by the magnetic Tayler instability has been recently proposed as a possible candidate for such a missing mechanism. Results: The revised prescription for the transport by the Tayler instability leads to low core rotation rates after the main sequence that are in better global agreement with asteroseismic measurements than those predicted by models with purely hydrodynamic processes or with the original Tayler-Spruit dynamo. A detailed comparison with asteroseismic data shows that the rotational properties of at most two of the six subgiants can be correctly reproduced by models accounting for this revised magnetic transport process. This result is obtained independently of the value adopted for the calibration parameter in this prescription. We also find that this transport by the Tayler instability faces difficulties in simultaneously reproducing asteroseismic measurements available for subgiant and red giant stars. The low values of the calibration parameter needed to correctly reproduce the rotational properties of two of the six subgiants lead to core rotation rates during the red giant phase that are too high. Inversely, the higher values of this parameter needed to reproduce the core rotation rates of red giants lead to a very low degree of radial differential rotation before the red giant phase, which is in contradiction with the internal rotation of subgiant stars. Conclusions: In its present form, the revised prescription for the transport by the Tayler instability does not provide a complete solution to the missing AM transport revealed by asteroseismology of evolved stars.