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Towards an Increased Accuracy of Fundamental Properties of Stars: Proposing a Set of Nominal Astrophysical Parameters and Constants

机译:朝着恒星的基本属性提高准确性:提出一组名义天体物理参数和常数

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With the precision of space-borne photometers better than 100 ppm (i.e. MOST, CoRoT and Kepler), the derived stellar properties often suffer from systematic offsets due to the values used for solar mass, radius and luminosity, and to fundamental astrophysical constants. Stellar parameters are often expressed in terms of L_⊙, M_⊙ and R_⊙, but the actual values used vary from study to study. Here, we propose to adopt a nominal set of fundamental solar parameters that will impose consistency across published works and eliminate systematics that stem from inconsistent values. We further implore the community to rigorously use the official values of fundamental astrophysical constants set forth by the Committee on Data for Science and Technology (CODATA).
机译:随着空间光度计的精度优于100ppm(即大多数,冠状孔和开夹),由于用于太阳能质量,半径和发光度的值以及基本的天体物理常数,衍生的恒星特性通常遭受系统的偏移。恒星参数通常以L_∞,m_⊙和r_∈表示,但使用的实际值因研究而异。在这里,我们建议采用名义上的基本太阳能参数,将跨发布的作品施加一致性,并消除源于不一致价值的系统。我们进一步拟入社区严格使用科学技术数据委员会(CODATA)委员会规定的基本天体物理常数的官方价值。

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