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THE COMPLEMENTARY ROLES OF INTERFEROMETRY AND ASTEROSEISMOLOGY IN DETERMINING THE MASS OF SOLAR-TYPE STARS

机译:干涉法和星光学在确定太阳系恒星质量中的互补作用

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摘要

How important is an independent diameter measurement for the determination of stellar parameters of solar-type stars? When coupled with seismic observables, how well can we determine the stellar mass? If we can determine the radius of the star to between 1 % and 4%, how does this affect the theoretical uncertainties? Interferometry can provide an independent radius determination, and it has been suggested that we should expect at least a 4% precision on such a measurement for nearby solar-type stars. This study aims to provide both qualitative and quantitative answers to these questions for a star, such as our Sun, where seismic information will be available. We show that the importance of an independent radius measurement depends on the combination of observables available and the size of the measurement errors. It is important for determining all stellar parameters and in particular the mass, where a good radius measurement can even allow us to determine the mass with a precision better than 2%. Our results also show that measuring the small frequency separation δv significantly improves the determination of the evolutionary stage τ and the mixing-length parameter α.
机译:独立的直径测量对于确定太阳型恒星的恒星参数有多重要?结合地震观测资料,我们如何确定恒星质量?如果我们可以将恒星的半径确定为介于1%和4%之间,那么这将如何影响理论不确定性?干涉测量法可以独立确定半径,建议对附近的太阳型恒星进行此类测量至少应达到4%的精度。这项研究旨在为恒星(例如太阳)提供有关地震问题的定性和定量答案。我们表明,独立半径测量的重要性取决于可用的可观测值和测量误差大小的组合。确定所有恒星参数,尤其是质量非常重要,良好的半径测量甚至可以使我们确定质量优于2%的质量。我们的结果还表明,测量较小的频率间隔δv可以显着改善进化阶段τ和混合长度参数α的确定。

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