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首页> 外文期刊>Astronomy and astrophysics >Thermohaline instability and rotation-induced mixing - III. Grid of stellar models and asymptotic asteroseismic quantities from the pre-main sequence up to the AGB for low- and intermediate-mass stars of various metallicities
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Thermohaline instability and rotation-induced mixing - III. Grid of stellar models and asymptotic asteroseismic quantities from the pre-main sequence up to the AGB for low- and intermediate-mass stars of various metallicities

机译:盐卤的不稳定性和旋转引起的混合-III。从主序前到AGB的各种金属金属的中低质量恒星的恒星模型和渐近立体地震量的网格

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Context. The availability of asteroseismic constraints for a large sample of stars from the missions CoRoT and Kepler paves the way for various statistical studies of the seismic properties of stellar populations. Aims. We evaluate the impact of rotation-induced mixing and thermohaline instability on the global asteroseismic parameters at different stages of the stellar evolution from the zero age main sequence to the thermally pulsating asymptotic giant branch to distinguish stellar populations. Methods. We present a grid of stellar evolutionary models for four metallicities (Z?=?0.0001, 0.002, 0.004, and 0.014) in the mass range from 0.85 to 6.0?M⊙. The models are computed either with standard prescriptions or including both thermohaline convection and rotation-induced mixing. For the whole grid, we provide the usual stellar parameters (luminosity, effective temperature, lifetimes, ... ), together with the global seismic parameters, i.e. the large frequency separation and asymptotic relations, the frequency corresponding to the maximum oscillation power νmax, the maximal amplitude Amax, the asymptotic period spacing of g-modes, and different acoustic radii. Results. We discuss a signature of rotation-induced mixing on the global asteroseismic quantities, that can be detected observationally. Thermohaline mixing whose effects can be identified using spectroscopic studies cannot be characterized by the global seismic parameters studied here. However, we cannot exclude that individual mode frequencies or other well chosen asteroseismic quantities might help us to constrain this mixing.
机译:上下文。 CoRoT和Kepler任务为大量恒星提供了星震约束,为恒星种群的地震特性的各种统计研究铺平了道路。目的我们评估了旋转诱发的混合和热盐不稳定性对恒星演化的各个阶段(从零年龄主序列到热脉动渐近巨型分支)的总体星震参数的影响,以区分恒星种群。方法。我们提出了质量范围从0.85到6.0?M?的四种金属(Z?=?0.0001、0.002、0.004和0.014)的恒星演化模型网格。这些模型可以通过标准处方计算,也可以包括热盐对流和旋转诱导的混合。对于整个网格,我们提供常规的恒星参数(光度,有效温度,寿命等)以及全局地震参数,即大的频率分离和渐近关系,该频率对应于最大振荡功率νmax,最大振幅Amax,g模的渐近周期间隔和不同的声半径。结果。我们讨论了在全球星震量上旋转引起的混合的特征,可以通过观测来检测到。可以通过光谱研究确定其作用的热盐混合不能用此处研究的总体地震参数来表征。但是,我们不能排除个别模式频率或其他精心选择的星震量可能会帮助我们限制这种混合。

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