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Accurate abundance analysis of late-type stars: advances in atomic physics

机译:后型恒星的精确丰度分析:原子物理学的进展

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The measurement of stellar properties such as chemical compositions, masses and ages, through stellar spectra, is a fundamental problem in astrophysics. Progress in the understanding, calculation and measurement of atomic properties and processes relevant to the high-accuracy analysis of F-, G-, and K-type stellar spectra is reviewed, with particular emphasis on abundance analysis. This includes fundamental atomic data such as energy levels, wavelengths, and transition probabilities, as well as processes of photoionisation, collisional broadening and inelastic collisions. A recurring theme throughout the review is the interplay between theoretical atomic physics, laboratory measurements, and astrophysical modelling, all of which contribute to our understanding of atoms and atomic processes, as well as to modelling stellar spectra.
机译:通过恒星光谱测量恒星特性(例如化学成分,质量和年龄)是天体物理学中的一个基本问题。本文对与F型,G型和K型恒星光谱的高精度分析有关的原子特性和过程的理解,计算和测量方面的进展进行了综述,其中特别强调了丰度分析。这包括基本原子数据,例如能级,波长和跃迁几率,以及光电离,碰撞加宽和非弹性碰撞的过程。贯穿本综述的一个反复出现的主题是理论原子物理学,实验室测量和天体物理建模之间的相互作用,所有这些都有助于我们对原子和原子过程以及对恒星光谱的建模。

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