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Asteroseismic modelling of the two F-type hybrid pulsators KIC?10080943A and KIC?10080943B

机译:两个F型混合脉动器KIC?10080943A和KIC?10080943B的空间地震模型

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Context. Pulsating binary stars are ideal targets for testing the theory of stellar structure and evolution. Fundamental parameters can be derived to high precision from binary modelling and provide crucial constraints for seismic modelling. High-order gravity modes are sensitive to the conditions near the convective core and therefore allow for a determination of parameters describing interior physics, especially the convective-core overshooting parameter. KIC?10080943 is a binary system that contains two gravity- and pressure-mode hybrid pulsators. A detailed observational study has provided fundamental and seismic parameters for both components. Aims. We aim to find a model that is able to predict the observed g -mode period spacings and stellar parameters of both components of KIC?10080943. Methods. By calculating model grids with the stellar evolution code MESA and the seismic code GYRE, we can compare theoretical properties to the observed mean period spacing and position in the Hertzsprung-Russell diagram. Results. The masses of our best models are somewhat below the values estimated from binarity, which is a consequence of the low observed mean g -mode period spacing. We find that the amount of core overshooting and diffusive mixing can be well constrained by the equal-age requirement for the two stars, however, we find no significant difference for different shapes of core overshooting. The measured rotation rates are within the limit of validity for the first-order perturbation approximation. We can find a good fit by using the traditional approximation for the pulsations, when taking slightly younger models with a higher asymptotic period spacing. This is because the zonal modes experience a slight shift due to the Coriolis force, which the first-order perturbation approximation ignores.
机译:上下文。脉动双星是测试恒星结构和演化理论的理想目标。基本参数可以从二进制建模中高精度得出,并为地震建模提供了关键的约束。高阶重力模式对对流岩心附近的条件敏感,因此可以确定描述内部物理学的参数,尤其是对流岩心超调参数。 KIC?10080943是一个二进制系统,其中包含两个重力模式和压力模式混合式脉动器。详尽的观测研究为这两个组件提供了基本参数和地震参数。目的我们旨在找到一个模型,该模型能够预测KIC?10080943的两个组件的观测到的g模式周期间隔和恒星参数。方法。通过使用恒星演化代码MESA和地震代码GYRE计算模型网格,我们可以将理论特性与观测到的平均周期间隔和赫兹普鲁-拉塞尔图中的位置进行比较。结果。我们最好的模型的质量略低于从二值性估计的值,这是由于观测到的平均g模态周期间隔低所致。我们发现两颗恒星的均等年龄要求可以很好地限制堆芯超调量和扩散混合的量,但是,我们发现对于不同形状的堆芯超调量没有显着差异。测得的旋转速度在一阶扰动近似值的有效范围内。当采用渐近周期间隔较大的较年轻模型时,可以通过对脉动使用传统近似来找到合适的拟合。这是因为纬向模式会由于科里奥利力而发生轻微的偏移,而一阶扰动近似会忽略该偏移。

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