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Analysis of surface structures of chemically peculiar stars with modern and future interferometers

机译:用现代和未来的干涉仪分析化学特殊恒星的表面结构

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Interferometry is a very powerful observational technique known in astronomy for many decades. Its application to main-sequence stars, however, is still limited to only brightest objects. In this work we aim to explore the application of interferometry to a special class of main-sequence stars known as chemically peculiar (CP) stars. These stars demonstrate surface chemical abundance inhomogeneities (spots) that usually cover a considerable part of the stellar surface and induce a pronounced spectral and photometric variability. Interferometry thus has a potential to naturally resolve such spots in single stars, providing unique complementary information about spots sizes and contrasts. By means of numerical experiments we derive the actual interferometric requirements essential for the CP stars research that can be addressed in future instrument development. The first comparison between theoretical predictions and already available observations will also be discussed.
机译:干涉测量法是数十年来在天文学中众所周知的一种非常强大的观测技术。但是,它对主序星的应用仍然仅限于最亮的物体。在这项工作中,我们旨在探索将干涉测量法应用于一类特殊的主序星,即化学特有(CP)星。这些恒星表现出表面化学丰度的不均匀性(斑点),这些不均匀性通常会覆盖大部分恒星表面,并引起明显的光谱和光度变异性。因此,干涉测量技术有可能自然分辨出单颗恒星中的此类斑点,从而提供有关斑点大小和对比度的独特补充信息。通过数值实验,我们得出了对CP恒星研究必不可少的实际干涉测量要求,这些要求可以在未来的仪器开发中解决。还将讨论理论预测与已有观测值之间的首次比较。

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