论文标题

恒星结构的逆逆呼吸症数据倒置

Inversions of stellar structure from asteroseismic data

论文作者

Buldgen, Gaël, Bétrisey, Jérôme, Roxburgh, Ian W., Vorontsov, Sergei V., Reese, Daniel R.

论文摘要

在21世纪初期,基于空间的光度法任务的出现使得在高级推理技术的小型鉴定数据中的应用到了直到限制在Heliosesology领域。观测值的高质量,在演化的太阳能振荡器中发现混合模式以及需要改善恒星基本参数(例如质量,半径和年龄)的确定,导致了复杂的建模工具的开发,其中包括地震反转起关键作用。在这篇综述中,我们将讨论从旋转到恒星学到星空学的遥远恒星的内部结构的现有反转技术。我们将介绍针对各种开普勒目标获得的结果,它们与其他现有建模技术以及地震分析的局限性以及在当前苔丝和未来的柏拉图任务的背景下对这些方法的未来发展的观点,以及在序列序列型示意图中所观察到的混合模式的利用,这可能是为了使类似于序列的示意图的效果,这可能是为了使类似于多样性的示意图。

The advent of space-based photometry missions in the early 21st century enabled the application to asteroseismic data of advanced inference techniques until then restricted to the field of helioseismology. The high quality of the observations, the discovery of mixed modes in evolved solar-like oscillators and the need for an improvement in the determination of stellar fundamental parameters such as mass, radius and age led to the development of sophisticated modelling tools, amongst which seismic inversions play a key role. In this review, we will discuss the existing inversion techniques for the internal structure of distant stars adapted from helio- to asteroseismology. We will present results obtained for various Kepler targets, their coupling to other existing modelling techniques as well as the limitations of seismic analyses and the perspectives for future developments of these approaches in the context of the current TESS and the future PLATO mission, as well as the exploitation of the mixed modes observed in post-main sequence solar-like oscillators, for which variational formulations might not provide sufficient accuracy.

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