快速旋转体的星震建模及其在天体物理学中的机遇

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2024-12-20 DOI:10.1051/0004-6361/202348575
Conny Aerts, Andrew Tkachenko
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引用次数: 0

摘要

自转对恒星的生命至关重要。在恒星的演化过程中,它会在恒星内部引起大量的动力学现象,其影响会累积到恒星死亡为止。所有恒星都在一定程度上旋转,但大多数质量高于太阳质量1.3倍的恒星在其核寿命的90%以上都在快速旋转。内部旋转引导着角动量和化学元素在恒星内部的传递。这些传输过程随着恒星的演化而改变。恒星旋转及其诱导的输运过程的累积效应决定了内核中氢同位素耗尽时的氦含量。这一阶段的氦含量也会影响恒星生命结束时的重元素产量。正确的恒星演化理论和任何切合实际的星系化学富集模型必须建立在对恒星旋转和诱导输运过程的观测校准的基础上。在过去的几年里,星震学为单星和双星提供了这样的校准。我们回顾了不同恒星质量制度下旋转恒星的星震模型的现状,以一种非专家可以访问的方式。在这样做的同时,我们描述了星震学在天体物理学的各个领域引发的令人兴奋的机会,触及了诸如系外行星科学,星系结构和演化以及引力波物理学等主题,仅举几例。在此过程中,我们为未来星震学的“工业化”应用提供了充分的预览,这些应用包括开普勒、凌日系外行星测量卫星(TESS)、行星凌日和恒星振荡(PLATO)、盖亚、地基光谱和多色光度测量等。我们以一份与天体物理学许多领域相关的星震学的重要信息和成就的清单来结束这篇综述。
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Asteroseismic modelling of fast rotators and its opportunities for astrophysics
Rotation matters for the life of a star. It causes a multitude of dynamical phenomena in the stellar interior during a star’s evolution, and its effects accumulate until the star dies. All stars rotate at some level, but most of those born with a mass higher than 1.3 times the mass of the Sun rotate rapidly during more than 90% of their nuclear lifetime. Internal rotation guides the angular momentum and chemical element transport throughout the stellar interior. These transport processes change over time as the star evolves. The cumulative effects of stellar rotation and its induced transport processes determine the helium content of the core by the time it exhausts its hydrogen isotopes. The amount of helium at that stage also guides the heavy element yields by the end of the star’s life. A proper theory of stellar evolution and any realistic models for the chemical enrichment of galaxies must be based on observational calibrations of stellar rotation and of the induced transport processes. In the last few years, asteroseismology offers such calibrations for single and binary stars. We review the current status of asteroseismic modelling of rotating stars for different stellar mass regimes in an accessible way for the non-expert. While doing so, we describe exciting opportunities sparked by asteroseismology for various domains in astrophysics, touching upon topics such as exoplanetary science, galactic structure and evolution, and gravitational wave physics to mention just a few. Along the way we provide ample sneak-previews for future ‘industrialised’ applications of asteroseismology to slow and rapid rotators from the exploitation of combined Kepler, Transiting Exoplanet Survey Satellite (TESS), PLAnetary Transits and Oscillations of stars (PLATO), Gaia, and ground-based spectroscopic and multi-colour photometric surveys. We end the review with a list of takeaway messages and achievements of asteroseismology that are of relevance for many fields of astrophysics.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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