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Rotating models of young solar-type stars - Exploring braking laws and angular momentum transport processes

机译:年轻的太阳型恒星的旋转模型-探索制动定律和角动量传输过程

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Context. Understanding the angular momentum evolution of stars is one of the greatest challenges of modern stellar physics. Aims. We study the predicted rotational evolution of solar-type stars from the pre-main sequence to the solar age with 1D rotating evolutionary models including physical ingredients. Methods. We computed rotating evolution models of solar-type stars including an external stellar wind torque and internal transport of angular momentum following the method of Maeder and Zahn with the code STAREVOL. We explored different formalisms and prescriptions available from the literature. We tested the predictions of the models against recent rotational period data from extensive photometric surveys, lithium abundances of solar-mass stars in young clusters, and the helioseismic rotation profile of the Sun. Results. We find a best-matching combination of prescriptions for both internal transport and surface extraction of angular momentum. This combination provides a very good fit to the observed evolution of rotational periods for solar-type stars from early evolution to the age of the Sun. Additionally, we show that fast rotators experience a stronger coupling between their radiative region and the convective envelope. Regardless of the set of prescriptions, however, we cannot simultaneously reproduce surface angular velocity and the internal profile of the Sun or the evolution of lithium abundance. Conclusions. We confirm the idea that additional transport mechanisms must occur in solar-type stars until they reach the age of the Sun. Whether these processes are the same as those needed to explain recent asteroseismic data in more advanced evolutionary phases is still an open question.
机译:上下文。了解恒星的角动量演化是现代恒星物理学的最大挑战之一。目的我们使用包括物理成分的一维旋转演化模型研究了太阳型恒星从主前序列到太阳年龄的预测旋转演化。方法。我们按照Maeder和Zahn的方法(代码为STAREVOL)计算了太阳型恒星的旋转演化模型,包括外部恒星风转矩和内部角动量传输。我们探索了可从文献中获得的不同形式主义和处方。我们根据广泛的光度学调查,年轻星团中太阳质量恒星的锂丰度以及太阳的日震旋转剖面,针对最近的自转周期数据测试了模型的预测。结果。我们找到了内部运输和角动量表面提取的最佳匹配处方组合。这种组合非常适合从早期演化到太阳年龄的太阳型恒星自转周期观察到的演化。此外,我们显示出快速旋转器的辐射区域与对流包络线之间的耦合更强。但是,无论采用哪种规定,我们都无法同时重现表面角速度和太阳的内部轮廓或锂丰度的演变。结论。我们证实了这样的想法,即太阳型恒星必须达到太阳的年龄,才能发生其他的传输机制。这些过程是否与在更高级的演化阶段解释最新的地震数据所需的过程相同,这仍然是一个悬而未决的问题。

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