论文标题

红色巨星中偶极混合模式耦合因子的演变:浮力尖峰的影响

Evolution of Dipolar Mixed-mode Coupling Factor in Red Giant Stars: Impact of Buoyancy Spike

论文作者

Jiang, Chen, Cunha, Margarida, Christensen-Dalsgaard, Joergen, Zhang, Qiansheng, Gizon, Laurent

论文摘要

在红色巨人中观察到的混合模式可以研究恒星内部结构。这些结构中的一个重要特征是浮力尖峰是由第一次挖掘过程中留下的化学梯度的不连续性引起的。浮力尖峰以低亮度红色巨人的形式出现在对流区的底部,后来当G模式腔膨胀以包含尖峰时,后来变成了小故障。在这里,我们使用具有不同特性的恒星模型研究了浮力尖峰对偶性混合模式的影响。我们发现,相对于峰值位置,渐近形式主义对耦合因子的适用性取决于逃生区的位置。在拟合振荡频率的Q值与文献中提出的任何形式主义之间的Q值之间存在显着偏差,在间隔5至15 microhz的模型中发现了频率较大的模型,其evanevanementement区域位于过渡区域,可能是薄或厚的。但是,仍然可以通过选择根据Q值使用哪种形式主义来调和Q与渐近形式主义的预测。对于接近光度凸起的恒星,浮力尖峰变成了故障,并强烈影响模式频率。在不考虑故障的情况下拟合频率会导致推断Q中的非物理变化,但是我们表明,当正确考虑拟合中的小故障时,这可以纠正。

Mixed modes observed in red giants allow for investigation of the stellar interior structures. One important feature in these structures is the buoyancy spike caused by the discontinuity of the chemical gradient left behind during the first dredge-up. The buoyancy spike emerges at the base of the convective zone in low-luminosity red giants and later becomes a glitch when the g-mode cavity expands to encompass the spike. Here, we study the impact of the buoyancy spike on the dipolar mixed modes using stellar models with different properties. We find that the applicability of the asymptotic formalisms for the coupling factor, q, varies depending on the location of the evanescent zone, relative to the position of the spike. Significant deviations between the value of q inferred from fitting the oscillation frequencies and either of the formalisms proposed in the literature are found in models with a large frequency separation in the interval 5 to 15 microHz, with evanescent zones located in a transition region which may be thin or thick. However, it is still possible to reconcile q with the predictions from the asymptotic formalisms, by choosing which formalism to use according to the value of q. For stars approaching the luminosity bump, the buoyancy spike becomes a glitch and strongly affects the mode frequencies. Fitting the frequencies without accounting for the glitch leads to unphysical variations in the inferred q, but we show that this is corrected when properly accounting for the glitch in the fitting.

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