探测亚矮星B星的核心:它们与燃烧氦核的红巨星的核心比较

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Margarida S. Cunha, Juliana Amaral, Sofia Avelino, Anselmo Falorca, Yuri Damasceno, Pedro P. Avelino
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引用次数: 0

摘要

来自恒星对流核心的物质混合到邻近的辐射层一直是一个长期争论的问题。脉动的亚矮星B提供了极好的条件来推进我们对这个问题的理解。在这项工作中,我们使用一种与模型无关的方法来推断三颗亚矮星B恒星的核心信息,并将其与早期对氦核燃烧阶段红巨星的类似分析推断进行比较。这是通过将重力模式脉动周期的分析描述与开普勒卫星收集的脉动数据相匹配来实现的。从这些拟合中,我们推断出缩短的渐近周期间隔以及与恒星内部化学不连续有关的尖锐结构变化的幅度和位置。我们的研究结果表明,这三颗恒星都存在类似性质的尖锐结构变化,它们位于重力模式传播腔的边缘附近,可能与C-O/He跃迁有关。我们发现这些结构变化与氦核燃烧的红巨星有系统的不同,它们的振幅更大,并且位于更大的浮力半径处。这表明,在亚矮B星中,在绝热分层核心之外进入辐射分层层的化学混合可能比在氦核燃烧的红巨星中更广泛。或者,在绝热分层核心之外的混合区域的分层在两种类型的恒星之间可能有显著的不同。对这三颗恒星内部结构变化设置的模型无关约束是此类约束中的第一个,并且将是增强恒星对流核心附近层的建模以及测试导致热亚矮星形成的非规范恒星演化通道的关键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Probing the cores of subdwarf B stars: How they compare to cores in helium core-burning red giants
The mixing of material from stellar convective cores into their adjacent radiative layers has been a matter of long-standing debate. Pulsating subdwarf B stars offer excellent conditions to advance our understanding of this problem. In this work we use a model-independent approach to infer information about the cores of three subdwarf B stars and compare it with similar inferences from an earlier analysis of red giants in the helium core-burning phase. This is achieved by fitting an analytical description of the gravity-mode pulsation periods to pulsation data collected by the Kepler satellite. From the fits we infer the reduced asymptotic period spacings and the amplitude and position of sharp structural variations associated with chemical discontinuities in the stellar interiors. Our results indicate the presence of sharp structural variations with similar properties in all three stars, located near the edge of the gravity-mode propagation cavity and likely associated with the C-O/He transition. We find that these structural variations differ systematically from those of helium core-burning red giant stars, having larger amplitudes and being located at a larger buoyancy radius. This suggests that chemical mixing beyond the adiabatically stratified core into the radiatively stratified layers may be more extensive in subdwarf B stars than in helium core-burning red giants. Alternatively, the stratification of the mixing region beyond the adiabatically stratified core may differ significantly between the two types of stars. The model-independent constraints set on the structural variations inside these three stars are the first of a kind and will be key to enhancing the modelling of layers adjacent to stellar convective cores and to testing non-canonical stellar evolution channels leading to the formation of hot subdwarf stars.
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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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